Tag Archives: speed reducer gearbox

China manufacturer S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer

Product Description

S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer

 

Descriptions:
1. Combination of helical-worm gears, small in size, light weight, compact structure, large reduction ratio and strong bearing capacity;
2. Bump gearbox body surface has a cooling effect, low temperature rise and low noise;
3. Good sealing performance and strong working environment adaptability;
4. High drive accuracy, particularly adapted to the frequent starts occasions;
5. Input types: Motor directly connected, the motor belt join or input shaft coupling flange input.
Size: S/SA/SF/SAF : S37, S47, S57, S67, S77, S87, S97
Structure: Foot mounted, flange mounted, hollow shaft, CHINAMFG shaft
Type: SAZ, SA, SAF, SAZ, SAT, SS, SAS, SFS, SFS, SAFS, S

Specifications:
This gear speed reducer is a new transmission machine designed & manufactured by worm- helical gear transmission principle.
1. High mechanical efficiency: 94%-98% (depends on the transmission steps);
2. Input form: Flange input, direct motor input, shaft input;
3. Materials of gear speed reducer body: HT250 high-strength cast iron;
4. Materials of shafts: 42CrMo alloy steel;
5. Materials of gears: 20CrMnTi alloy steel;
6. Heat treatment: Tempering, cementiting, quenching;
7. Surface hardness of gears: HRC58° -62 ° ;
8. Maching precision of gears: 6-5GRADE;
9. Brand of bearings: HRB, LYC, ZWZ, NSK;
10. Noise of gear speed reducer: 60-68dB

Application:
Coal equipment, ferrous metallurgy, mining machinery, paper machinery, rubber and plastics, petrochemical, lifting transportation, drink beer, food packaging, pharmacy and leather, textile dyeing and printing, environmental protection equipment, light industry machinery and so on.

Packing & Shipping:
1. Prevent from damage.
2. As customers’ requirements, in perfect condition.
3. Delivery : As per contract delivery on time.
4. Shipping : As per client request. We can accept CIF, Door to Door etc. or client authorized agent we supply all the necessary assistant.

About us:
HangZhou CHINAMFG machinery technology Co., Ltd is an industry transmission solutions manufacuturer and service provider.

We offer 1 stop solution for power transmission products for different factories, such as chemicals, energy, material handling, environmental, extraction, pulp and paper, steel and metal, food and beverage, and construction industries.

We supply: Customised gears, Small gearmotors, Industrial gearboxes, Motors, Brand product sourcing.

Our industrial Gear, Gearbox, gearmotor and motor are sold to more than 30 countries. High quality, good price, in time response and sincere service are our value and promises. We aim at making happy cooperation with our customers, bring them reliable and comfortable service. /* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you explain the impact of winch drives on the overall efficiency of lifting systems?

The efficiency of lifting systems is significantly influenced by the choice and performance of winch drives. Winch drives play a crucial role in converting power into mechanical work to lift or move heavy loads. Here’s a detailed explanation of the impact of winch drives on the overall efficiency of lifting systems:

  • Power Transmission:

Winch drives are responsible for transmitting power from the energy source to the lifting mechanism. The efficiency of power transmission directly affects the overall efficiency of the lifting system. Well-designed winch drives minimize power losses due to friction, heat generation, or mechanical inefficiencies. By optimizing the gear system, bearings, and other mechanical components, winch drives can maximize power transmission efficiency and minimize energy waste.

  • Mechanical Advantage:

Winch drives provide a mechanical advantage that allows the lifting system to handle heavier loads with less effort. The mechanical advantage is determined by the gear ratio and drum diameter of the winch drive. By selecting an appropriate gear ratio, the winch drive can multiply the input torque, enabling the lifting system to overcome the resistance of the load more efficiently. A higher mechanical advantage reduces the strain on the power source and improves the overall efficiency of the lifting system.

  • Speed Control:

Winch drives offer speed control capabilities, allowing operators to adjust the lifting speed according to the specific requirements of the task. The ability to control the lifting speed is essential for efficient and safe operation. By utilizing winch drives with precise speed control mechanisms, the lifting system can optimize the speed to match the load, reducing unnecessary energy consumption and increasing overall efficiency.

  • Load Distribution:

Winch drives play a vital role in distributing the load evenly across the lifting system. Uneven load distribution can lead to excessive stress on certain components, reducing the overall efficiency and potentially causing equipment failure. Well-designed winch drives ensure that the load is distributed evenly, minimizing stress concentrations and maximizing the efficiency of the lifting system.

  • Control and Safety Features:

Winch drives incorporate control and safety features that contribute to the overall efficiency of the lifting system. Advanced control systems allow for precise positioning and smooth operation, minimizing unnecessary movements and reducing energy consumption. Safety features, such as overload protection or emergency stop mechanisms, help prevent accidents and equipment damage, ensuring uninterrupted and efficient operation of the lifting system.

  • Reliability and Maintenance:

The reliability and maintenance requirements of winch drives directly impact the overall efficiency of lifting systems. Well-designed winch drives with robust construction and quality components minimize the risk of breakdowns or unplanned downtime. Additionally, winch drives that are easy to maintain and service reduce the time and resources required for maintenance, maximizing the uptime and efficiency of the lifting system.

In summary, the choice and performance of winch drives have a significant impact on the overall efficiency of lifting systems. By optimizing power transmission, providing a mechanical advantage, offering speed control, ensuring load distribution, incorporating control and safety features, and prioritizing reliability and maintenance, winch drives can enhance the efficiency, productivity, and safety of lifting operations.

winch drive

How do winch drives contribute to precise and controlled movement in lifting operations?

Winch drives play a crucial role in achieving precise and controlled movement in lifting operations. They provide the necessary power and control to lift and lower loads in a controlled manner. Here’s a detailed explanation of how winch drives contribute to precise and controlled movement in lifting operations:

  • Pulling Power:

Winch drives are designed to generate substantial pulling power, allowing them to lift heavy loads. The power output of the winch drive is determined by factors such as the type of drive (electric, hydraulic, or pneumatic), motor power, and gear ratios. The high pulling power of winch drives enables them to handle loads with precision and control, even in challenging lifting scenarios.

  • Variable Speed Control:

Many winch drives offer variable speed control, allowing operators to adjust the lifting or lowering speed according to the specific requirements of the operation. This feature enables precise movement control, particularly when dealing with delicate or sensitive loads. Operators can slow down the speed for fine positioning or speed up the operation for more efficient lifting, depending on the situation. Variable speed control enhances the precision and control of the lifting process, minimizing the risk of load damage or accidents.

  • Braking Systems:

Winch drives are typically equipped with braking systems to ensure load holding and prevent unintended movement. The braking systems are designed to engage when the winch motor is not actively pulling or lowering the load, effectively immobilizing the load at the desired position. This feature allows for precise control over the load’s movement and prevents it from unintentionally drifting or descending. The braking systems contribute to the overall safety and stability of the lifting operation.

  • Control Mechanisms:

The control mechanisms of winch drives play a significant role in achieving precise and controlled movement. Winch drives can be operated manually, through remote control systems, or integrated control interfaces. Remote control systems, for example, enable operators to control the winch drive from a safe distance, providing better visibility and control over the lifting operation. Integrated control interfaces often offer additional features such as load monitoring, digital displays, and programmable settings, allowing for more precise and controlled movement of the load.

  • Load Monitoring and Safety Features:

Winch drives may incorporate load monitoring systems and safety features to further enhance precise and controlled movement. Load monitoring systems provide real-time feedback on the load’s weight, allowing operators to adjust the lifting parameters accordingly. Safety features such as overload protection and limit switches prevent the winch drive from operating beyond its capacity or reaching unsafe positions, ensuring controlled movement and preventing damage or accidents.

By combining their pulling power, variable speed control, braking systems, control mechanisms, and safety features, winch drives enable precise and controlled movement in lifting operations. They provide the necessary power, control, and safety measures to handle heavy loads with accuracy, minimizing the risk of load damage, accidents, or injuries. The precise and controlled movement achieved through winch drives enhances operational efficiency, load positioning, and overall safety in lifting operations.

winch drive

What is a winch drive, and how is it utilized in various applications?

A winch drive is a mechanical system designed to provide controlled pulling or lifting capabilities using a spool or drum around which a cable or rope is wound. It consists of a power source, such as an electric motor or hydraulic system, coupled with a gearbox or transmission mechanism to control the speed and torque output. Winch drives are widely utilized in various applications that require the controlled movement of heavy loads. Here’s a detailed explanation of winch drives and their utilization in different applications:

  • Off-Road Vehicles and Recovery:

Winch drives are commonly used in off-road vehicles, such as trucks, SUVs, and ATVs, for recovery purposes. In situations where a vehicle gets stuck or needs to be pulled out of challenging terrain, a winch drive mounted on the vehicle’s front or rear bumper can be employed. The winch drive’s cable is connected to a secure anchor point, and as the winch motor rotates, it winds the cable onto the drum, exerting a pulling force that helps extract the vehicle from the obstacle. Winch drives provide reliable pulling power and are essential for off-road enthusiasts, emergency services, and military applications.

  • Marine and Boating:

In marine and boating applications, winch drives are utilized for various tasks, including anchoring, mooring, and lifting heavy loads. Winches are commonly found on sailboats and powerboats to control the sails, raise and lower the anchor, or assist in docking. They are also used in larger vessels and ships for cargo handling, launching and recovering small boats or life rafts, and handling equipment on deck. The versatility and strength of winch drives make them indispensable in the maritime industry, providing precise and controlled pulling or lifting capabilities in demanding marine environments.

  • Construction and Industrial:

Winch drives play a vital role in construction and industrial settings, where the controlled movement of heavy materials and equipment is required. They are utilized in cranes, hoists, and lifting systems to perform tasks such as raising and lowering loads, positioning materials, and erecting structures. Winches can also be found in material handling equipment, such as forklifts and telehandlers, to assist in loading and unloading operations. In construction sites, winch drives are valuable for activities like tensioning cables, pulling machinery, and operating temporary lifts. The robustness and reliability of winch drives make them essential tools in the construction and industrial sectors.

  • Recreational and Entertainment:

Winch drives are utilized in various recreational and entertainment applications. In amusement parks and adventure facilities, winches are often used in zip line systems, allowing participants to traverse from one point to another safely. They are also employed in aerial lifts and chairlifts for ski resorts and mountainous areas. Winches provide controlled and reliable movement, ensuring the safety and enjoyment of individuals engaging in recreational activities. Additionally, winches are utilized in stage productions and theatrical settings to create dynamic effects, such as flying performers or moving set pieces.

  • Automotive and Garage:

In automotive and garage settings, winch drives find utility in a variety of applications. They are commonly used in car haulers and trailers to load and unload vehicles onto the platform. Winches are also employed in automotive repair and maintenance, assisting in tasks such as engine removal, vehicle recovery, and frame straightening. In home garages, winch drives can be utilized for lifting heavy objects, such as engines or equipment. The versatility and compactness of winch drives make them valuable tools for automotive enthusiasts, professional mechanics, and DIY enthusiasts.

In summary, a winch drive is a mechanical system that provides controlled pulling or lifting capabilities using a spool or drum and a power source. They are employed in various applications, including off-road vehicle recovery, marine and boating operations, construction and industrial tasks, recreational and entertainment activities, automotive and garage settings. Winch drives offer reliable and controlled movement, allowing for the handling of heavy loads in a wide range of settings and industries.

worm_driveworm_drive
editor by Dream 2024-11-18

China OEM Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer

Product Description

Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer

 

Descriptions:
1. Combination of helical-worm gears, small in size, light weight, compact structure, large reduction ratio and strong bearing capacity;
2. Bump gearbox body surface has a cooling effect, low temperature rise and low noise;
3. Good sealing performance and strong working environment adaptability;
4. High drive accuracy, particularly adapted to the frequent starts occasions;
5. Input types: Motor directly connected, the motor belt join or input shaft coupling flange input.
Size: S/SA/SF/SAF : S37, S47, S57, S67, S77, S87, S97
Structure: Foot mounted, flange mounted, hollow shaft, CHINAMFG shaft
Type: SAZ, SA, SAF, SAZ, SAT, SS, SAS, SFS, SFS, SAFS, S

Specifications:
This gear speed reducer is a new transmission machine designed & manufactured by worm- helical gear transmission principle.
1. High mechanical efficiency: 94%-98% (depends on the transmission steps);
2. Input form: Flange input, direct motor input, shaft input;
3. Materials of gear speed reducer body: HT250 high-strength cast iron;
4. Materials of shafts: 42CrMo alloy steel;
5. Materials of gears: 20CrMnTi alloy steel;
6. Heat treatment: Tempering, cementiting, quenching;
7. Surface hardness of gears: HRC58° -62 ° ;
8. Maching precision of gears: 6-5GRADE;
9. Brand of bearings: HRB, LYC, ZWZ, NSK;
10. Noise of gear speed reducer: 60-68dB.

Parameters:

Application:
Coal equipment, ferrous metallurgy, mining machinery, paper machinery, rubber and plastics, petrochemical, lifting transportation, drink beer, food packaging, pharmacy and leather, textile dyeing and printing, environmental protection equipment, light industry machinery and so on.

FAQ:
Q1 Are you a manufacturer or trading company?
A1 A company integrated with industry and trade.

Q2 What about the shipping methods?
A2 For urgent order and light weight, you can choose the following express UPS, FedEx, TNT,DHL, EMS. For heavy weight, you can choose to deliver the goods by air or by sea to save cost.

Q3 What about the payment methods?
A3 We accept TT, LC for big amount, and for small amount, you can pay us by PayPal, Western Union, and etc.

Q4 How much does it cost to ship to my country?
A4 It depends on seasons. Fee is different in different seasons. You can consult us at all times.

Q5 What’s your delivery time?
A5 Usually we produce within 35-60 days after the payment confirmed. If you are urgent, we will urge the production department for you. /* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

How does the choice of winch drives affect the overall performance and reliability of lifting operations?

The choice of winch drives has a significant impact on the overall performance and reliability of lifting operations. Here’s a detailed explanation of how the choice of winch drives affects performance and reliability:

  • Lifting Capacity:

The choice of winch drives directly affects the lifting capacity of the system. Different winch drives have varying load capacities, and selecting an appropriate winch drive that matches the intended lifting requirements is crucial. Choosing a winch drive with insufficient lifting capacity can result in overloading, which can lead to equipment failure, safety hazards, and potential damage to the load or surrounding structures. On the other hand, selecting a winch drive with a higher lifting capacity than necessary can lead to unnecessary costs and inefficient operation. Therefore, selecting the right winch drive with the appropriate lifting capacity is essential for optimal performance and reliability.

  • Speed and Control:

The choice of winch drives also affects the speed and control of lifting operations. Different winch drives offer varying speed ranges and control options. High-quality winch drives provide smooth and precise speed control, allowing for accurate positioning and delicate handling of loads. The choice of winch drives with suitable speed and control capabilities ensures efficient and controlled lifting operations, reducing the risk of accidents, damage to the load, or strain on the lifting equipment. Additionally, winch drives with advanced control features, such as programmable logic controllers (PLCs) or electronic control systems, enhance operational reliability and performance by enabling synchronized movements and automation.

  • Durability and Reliability:

The choice of winch drives significantly impacts the durability and reliability of lifting operations. High-quality winch drives constructed with robust materials and designed for heavy-duty applications offer enhanced durability and reliability. They can withstand the demanding conditions and stress associated with lifting operations, minimizing the risk of breakdowns, malfunctions, or premature wear. Choosing winch drives from reputable manufacturers known for their quality and reliability ensures long-term performance and reduces the need for frequent maintenance or replacement, enhancing the overall reliability of the lifting operations.

  • Safety Features:

Winch drives come with various safety features that contribute to the overall performance and reliability of lifting operations. These safety features include overload protection systems, emergency stop controls, limit switches, and fail-safe mechanisms. The choice of winch drives with comprehensive safety features enhances the safety of lifting operations by preventing overloading, safeguarding against equipment failures, and providing emergency shutdown options in critical situations. Properly selecting winch drives with appropriate safety features ensures compliance with safety regulations, reduces the risk of accidents, and enhances the reliability of lifting operations.

  • Compatibility and Integration:

Choosing winch drives that are compatible with the overall lifting system and easily integrable with other components is crucial for optimal performance and reliability. Compatibility issues can arise if the selected winch drive does not match the mechanical requirements, power supply, or control interfaces of the lifting system. Incompatibility can lead to operational inefficiencies, increased maintenance needs, or even system failures. Therefore, careful consideration of the compatibility and integration aspects when choosing winch drives ensures seamless integration, smooth operation, and enhanced reliability of lifting operations.

In summary, the choice of winch drives significantly impacts the overall performance and reliability of lifting operations. Factors such as lifting capacity, speed and control capabilities, durability and reliability, safety features, and compatibility with the overall system should be carefully considered when selecting winch drives. By choosing the right winch drives that meet the specific requirements of the lifting operations, operators can achieve optimal performance, ensure safe and efficient lifting, and enhance the overall reliability of the operations.

winch drive

Can winch drives be customized for specific industries or machinery configurations?

Yes, winch drives can be customized to meet the specific requirements of different industries or machinery configurations. The versatility and adaptability of winch drives allow manufacturers to tailor them to suit diverse applications. Here’s a detailed explanation of how winch drives can be customized:

  • Load Capacity:

Winch drives can be customized to accommodate various load capacities. Manufacturers can design and build winch drives with different load ratings to match the specific lifting or pulling requirements of different industries or machinery configurations. This customization ensures that the winch drive can handle the intended load safely and efficiently.

  • Power Source:

Winch drives can be customized to utilize different power sources, such as electric, hydraulic, or pneumatic. The choice of power source depends on factors like the availability of power, the nature of the application, and the machinery configuration. Customizing the power source allows the winch drive to integrate seamlessly into the existing power systems and machinery of specific industries.

  • Mounting Options:

Winch drives can be customized to offer various mounting options to suit specific machinery configurations. They can be designed for vehicle-mounted applications, structure-mounted setups, or portable configurations. Customizing the mounting options ensures that the winch drive can be easily and securely installed according to the specific requirements of the industry or machinery.

  • Control Mechanisms:

The control mechanisms of winch drives can be customized to align with the preferred control methods of different industries or machinery configurations. Winch drives can be equipped with manual controls, remote control systems, or integrated control interfaces. Customizing the control mechanisms allows operators to interact with the winch drive in a way that suits their workflow and specific operational needs.

  • Environmental Considerations:

Winch drives can be customized to meet specific environmental requirements. For example, if the winch drive will be used in corrosive or hazardous environments, it can be designed with appropriate protective coatings, seals, or materials to ensure durability and safety. Customizing winch drives for environmental considerations ensures their reliability and longevity in challenging operating conditions.

  • Safety Features:

Winch drives can be customized to incorporate specific safety features based on industry regulations and machinery configurations. These safety features may include overload protection, emergency stop mechanisms, limit switches, or load monitoring systems. Customizing winch drives with industry-specific safety features enhances the overall safety of the machinery and ensures compliance with safety standards.

  • Size and Dimensions:

Winch drives can be customized in terms of size and dimensions to accommodate space limitations or specific machinery configurations. Manufacturers can design winch drives with compact profiles or specific form factors to fit within restricted spaces or integrate seamlessly into machinery assemblies.

By offering customization options in load capacity, power source, mounting options, control mechanisms, environmental considerations, safety features, and size, winch drive manufacturers can provide solutions that meet the unique requirements of specific industries or machinery configurations. Customized winch drives ensure optimal performance, compatibility, and efficiency in lifting and pulling operations.

winch drive

Can you describe the various types and configurations of winch drives available in the market?

There are several types and configurations of winch drives available in the market, each designed to suit specific applications and requirements. Here’s a detailed description of the various types and configurations of winch drives:

  • Electric Winch Drives:

Electric winch drives are powered by electric motors and are widely used in various industries. They are available in different load capacities and configurations. Electric winches are known for their ease of use, precise control, and relatively low maintenance requirements. They can be mounted on vehicles, equipment, or structures and are commonly used in applications such as vehicle recovery, marine operations, construction sites, and material handling.

  • Hydraulic Winch Drives:

Hydraulic winch drives are powered by hydraulic systems and offer high pulling power for heavy-duty applications. They are commonly used in industries such as construction, oil and gas, and marine operations. Hydraulic winch drives are known for their robustness, durability, and ability to handle extreme loads. They are often mounted on large vehicles, cranes, or offshore platforms. Hydraulic winch drives require hydraulic power sources, such as hydraulic pumps, and are suitable for applications that require continuous and sustained pulling power.

  • Pneumatic Winch Drives:

Pneumatic winch drives utilize compressed air as the power source. They are mainly used in hazardous or explosive environments where electric or hydraulic power sources are not suitable. Pneumatic winch drives are commonly found in industries such as mining, oil refineries, and chemical plants. They offer a high level of safety due to the absence of electrical components and are capable of handling heavy loads in challenging environments.

  • Planetary Winch Drives:

Planetary winch drives are a popular type of winch drive known for their compact size, high efficiency, and high torque output. They consist of a central sun gear, multiple planetary gears, and an outer ring gear. The planetary gear system allows for high torque multiplication while maintaining a compact design. Planetary winch drives are commonly used in off-road vehicles, ATV winches, and small to medium-sized industrial applications.

  • Worm Gear Winch Drives:

Worm gear winch drives utilize a worm gear mechanism to achieve high gear reduction ratios. They offer excellent load holding capabilities and are commonly used in applications where precise load control and safety are paramount. Worm gear winch drives are popular in industries such as construction, theater rigging, and material handling. They are known for their self-locking feature, which prevents backdriving and provides secure load holding.

  • Capstan Winch Drives:

Capstan winch drives are designed with a rotating drum or capstan instead of a traditional spool. They are commonly used in applications that require constant tension or controlled pulling speeds, such as in marine settings for mooring operations or on fishing vessels. Capstan winch drives offer efficient and continuous pulling power and are suitable for handling ropes, cables, or lines with minimal slippage.

  • Wire Rope Winch Drives:

Wire rope winch drives are specifically designed to handle wire ropes as the lifting or pulling medium. They are equipped with drums that accommodate wire ropes of different diameters and lengths. Wire rope winch drives are commonly used in industries such as construction, mining, and offshore operations. They offer high load capacities and are suitable for heavy-duty applications that require strength, durability, and resistance to abrasion.

These are some of the various types and configurations of winch drives available in the market. Each type has its own advantages and is designed to cater to specific applications and industry requirements. When selecting a winch drive, it’s important to consider factors such as load capacity, power source, control mechanisms, and environmental conditions to ensure optimal performance and efficiency.

worm_driveworm_drive
editor by Dream 2024-11-18

China wholesaler S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer

Product Description

S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer

 

Descriptions:
1. Combination of helical-worm gears, small in size, light weight, compact structure, large reduction ratio and strong bearing capacity;
2. Bump gearbox body surface has a cooling effect, low temperature rise and low noise;
3. Good sealing performance and strong working environment adaptability;
4. High drive accuracy, particularly adapted to the frequent starts occasions;
5. Input types: Motor directly connected, the motor belt join or input shaft coupling flange input.
Size: S/SA/SF/SAF : S37, S47, S57, S67, S77, S87, S97
Structure: Foot mounted, flange mounted, hollow shaft, CHINAMFG shaft
Type: SAZ, SA, SAF, SAZ, SAT, SS, SAS, SFS, SFS, SAFS, S

Specifications:
This gear speed reducer is a new transmission machine designed & manufactured by worm- helical gear transmission principle.
1. High mechanical efficiency: 94%-98% (depends on the transmission steps);
2. Input form: Flange input, direct motor input, shaft input;
3. Materials of gear speed reducer body: HT250 high-strength cast iron;
4. Materials of shafts: 42CrMo alloy steel;
5. Materials of gears: 20CrMnTi alloy steel;
6. Heat treatment: Tempering, cementiting, quenching;
7. Surface hardness of gears: HRC58° -62 ° ;
8. Maching precision of gears: 6-5GRADE;
9. Brand of bearings: HRB, LYC, ZWZ, NSK;
10. Noise of gear speed reducer: 60-68dB

Application:
Coal equipment, ferrous metallurgy, mining machinery, paper machinery, rubber and plastics, petrochemical, lifting transportation, drink beer, food packaging, pharmacy and leather, textile dyeing and printing, environmental protection equipment, light industry machinery and so on.

Packing & Shipping:
1. Prevent from damage.
2. As customers’ requirements, in perfect condition.
3. Delivery : As per contract delivery on time.
4. Shipping : As per client request. We can accept CIF, Door to Door etc. or client authorized agent we supply all the necessary assistant.

About us:
HangZhou CHINAMFG machinery technology Co., Ltd is an industry transmission solutions manufacuturer and service provider.

We offer 1 stop solution for power transmission products for different factories, such as chemicals, energy, material handling, environmental, extraction, pulp and paper, steel and metal, food and beverage, and construction industries.

We supply: Customised gears, Small gearmotors, Industrial gearboxes, Motors, Brand product sourcing.

Our industrial Gear, Gearbox, gearmotor and motor are sold to more than 30 countries. High quality, good price, in time response and sincere service are our value and promises. We aim at making happy cooperation with our customers, bring them reliable and comfortable service. /* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you explain the impact of winch drives on the overall efficiency of lifting systems?

The efficiency of lifting systems is significantly influenced by the choice and performance of winch drives. Winch drives play a crucial role in converting power into mechanical work to lift or move heavy loads. Here’s a detailed explanation of the impact of winch drives on the overall efficiency of lifting systems:

  • Power Transmission:

Winch drives are responsible for transmitting power from the energy source to the lifting mechanism. The efficiency of power transmission directly affects the overall efficiency of the lifting system. Well-designed winch drives minimize power losses due to friction, heat generation, or mechanical inefficiencies. By optimizing the gear system, bearings, and other mechanical components, winch drives can maximize power transmission efficiency and minimize energy waste.

  • Mechanical Advantage:

Winch drives provide a mechanical advantage that allows the lifting system to handle heavier loads with less effort. The mechanical advantage is determined by the gear ratio and drum diameter of the winch drive. By selecting an appropriate gear ratio, the winch drive can multiply the input torque, enabling the lifting system to overcome the resistance of the load more efficiently. A higher mechanical advantage reduces the strain on the power source and improves the overall efficiency of the lifting system.

  • Speed Control:

Winch drives offer speed control capabilities, allowing operators to adjust the lifting speed according to the specific requirements of the task. The ability to control the lifting speed is essential for efficient and safe operation. By utilizing winch drives with precise speed control mechanisms, the lifting system can optimize the speed to match the load, reducing unnecessary energy consumption and increasing overall efficiency.

  • Load Distribution:

Winch drives play a vital role in distributing the load evenly across the lifting system. Uneven load distribution can lead to excessive stress on certain components, reducing the overall efficiency and potentially causing equipment failure. Well-designed winch drives ensure that the load is distributed evenly, minimizing stress concentrations and maximizing the efficiency of the lifting system.

  • Control and Safety Features:

Winch drives incorporate control and safety features that contribute to the overall efficiency of the lifting system. Advanced control systems allow for precise positioning and smooth operation, minimizing unnecessary movements and reducing energy consumption. Safety features, such as overload protection or emergency stop mechanisms, help prevent accidents and equipment damage, ensuring uninterrupted and efficient operation of the lifting system.

  • Reliability and Maintenance:

The reliability and maintenance requirements of winch drives directly impact the overall efficiency of lifting systems. Well-designed winch drives with robust construction and quality components minimize the risk of breakdowns or unplanned downtime. Additionally, winch drives that are easy to maintain and service reduce the time and resources required for maintenance, maximizing the uptime and efficiency of the lifting system.

In summary, the choice and performance of winch drives have a significant impact on the overall efficiency of lifting systems. By optimizing power transmission, providing a mechanical advantage, offering speed control, ensuring load distribution, incorporating control and safety features, and prioritizing reliability and maintenance, winch drives can enhance the efficiency, productivity, and safety of lifting operations.

winch drive

How do winch drives contribute to precise and controlled movement in lifting operations?

Winch drives play a crucial role in achieving precise and controlled movement in lifting operations. They provide the necessary power and control to lift and lower loads in a controlled manner. Here’s a detailed explanation of how winch drives contribute to precise and controlled movement in lifting operations:

  • Pulling Power:

Winch drives are designed to generate substantial pulling power, allowing them to lift heavy loads. The power output of the winch drive is determined by factors such as the type of drive (electric, hydraulic, or pneumatic), motor power, and gear ratios. The high pulling power of winch drives enables them to handle loads with precision and control, even in challenging lifting scenarios.

  • Variable Speed Control:

Many winch drives offer variable speed control, allowing operators to adjust the lifting or lowering speed according to the specific requirements of the operation. This feature enables precise movement control, particularly when dealing with delicate or sensitive loads. Operators can slow down the speed for fine positioning or speed up the operation for more efficient lifting, depending on the situation. Variable speed control enhances the precision and control of the lifting process, minimizing the risk of load damage or accidents.

  • Braking Systems:

Winch drives are typically equipped with braking systems to ensure load holding and prevent unintended movement. The braking systems are designed to engage when the winch motor is not actively pulling or lowering the load, effectively immobilizing the load at the desired position. This feature allows for precise control over the load’s movement and prevents it from unintentionally drifting or descending. The braking systems contribute to the overall safety and stability of the lifting operation.

  • Control Mechanisms:

The control mechanisms of winch drives play a significant role in achieving precise and controlled movement. Winch drives can be operated manually, through remote control systems, or integrated control interfaces. Remote control systems, for example, enable operators to control the winch drive from a safe distance, providing better visibility and control over the lifting operation. Integrated control interfaces often offer additional features such as load monitoring, digital displays, and programmable settings, allowing for more precise and controlled movement of the load.

  • Load Monitoring and Safety Features:

Winch drives may incorporate load monitoring systems and safety features to further enhance precise and controlled movement. Load monitoring systems provide real-time feedback on the load’s weight, allowing operators to adjust the lifting parameters accordingly. Safety features such as overload protection and limit switches prevent the winch drive from operating beyond its capacity or reaching unsafe positions, ensuring controlled movement and preventing damage or accidents.

By combining their pulling power, variable speed control, braking systems, control mechanisms, and safety features, winch drives enable precise and controlled movement in lifting operations. They provide the necessary power, control, and safety measures to handle heavy loads with accuracy, minimizing the risk of load damage, accidents, or injuries. The precise and controlled movement achieved through winch drives enhances operational efficiency, load positioning, and overall safety in lifting operations.

winch drive

Can you describe the various types and configurations of winch drives available in the market?

There are several types and configurations of winch drives available in the market, each designed to suit specific applications and requirements. Here’s a detailed description of the various types and configurations of winch drives:

  • Electric Winch Drives:

Electric winch drives are powered by electric motors and are widely used in various industries. They are available in different load capacities and configurations. Electric winches are known for their ease of use, precise control, and relatively low maintenance requirements. They can be mounted on vehicles, equipment, or structures and are commonly used in applications such as vehicle recovery, marine operations, construction sites, and material handling.

  • Hydraulic Winch Drives:

Hydraulic winch drives are powered by hydraulic systems and offer high pulling power for heavy-duty applications. They are commonly used in industries such as construction, oil and gas, and marine operations. Hydraulic winch drives are known for their robustness, durability, and ability to handle extreme loads. They are often mounted on large vehicles, cranes, or offshore platforms. Hydraulic winch drives require hydraulic power sources, such as hydraulic pumps, and are suitable for applications that require continuous and sustained pulling power.

  • Pneumatic Winch Drives:

Pneumatic winch drives utilize compressed air as the power source. They are mainly used in hazardous or explosive environments where electric or hydraulic power sources are not suitable. Pneumatic winch drives are commonly found in industries such as mining, oil refineries, and chemical plants. They offer a high level of safety due to the absence of electrical components and are capable of handling heavy loads in challenging environments.

  • Planetary Winch Drives:

Planetary winch drives are a popular type of winch drive known for their compact size, high efficiency, and high torque output. They consist of a central sun gear, multiple planetary gears, and an outer ring gear. The planetary gear system allows for high torque multiplication while maintaining a compact design. Planetary winch drives are commonly used in off-road vehicles, ATV winches, and small to medium-sized industrial applications.

  • Worm Gear Winch Drives:

Worm gear winch drives utilize a worm gear mechanism to achieve high gear reduction ratios. They offer excellent load holding capabilities and are commonly used in applications where precise load control and safety are paramount. Worm gear winch drives are popular in industries such as construction, theater rigging, and material handling. They are known for their self-locking feature, which prevents backdriving and provides secure load holding.

  • Capstan Winch Drives:

Capstan winch drives are designed with a rotating drum or capstan instead of a traditional spool. They are commonly used in applications that require constant tension or controlled pulling speeds, such as in marine settings for mooring operations or on fishing vessels. Capstan winch drives offer efficient and continuous pulling power and are suitable for handling ropes, cables, or lines with minimal slippage.

  • Wire Rope Winch Drives:

Wire rope winch drives are specifically designed to handle wire ropes as the lifting or pulling medium. They are equipped with drums that accommodate wire ropes of different diameters and lengths. Wire rope winch drives are commonly used in industries such as construction, mining, and offshore operations. They offer high load capacities and are suitable for heavy-duty applications that require strength, durability, and resistance to abrasion.

These are some of the various types and configurations of winch drives available in the market. Each type has its own advantages and is designed to cater to specific applications and industry requirements. When selecting a winch drive, it’s important to consider factors such as load capacity, power source, control mechanisms, and environmental conditions to ensure optimal performance and efficiency.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China wholesaler S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China wholesaler S Serial Helical Worm Right Angle Worm Reduction Gearbox Motor Worm Geared Speed Reducer “>
editor by Dream 2024-10-30

China Hot selling Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer

Product Description

Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer

 

Descriptions:
1. Combination of helical-worm gears, small in size, light weight, compact structure, large reduction ratio and strong bearing capacity;
2. Bump gearbox body surface has a cooling effect, low temperature rise and low noise;
3. Good sealing performance and strong working environment adaptability;
4. High drive accuracy, particularly adapted to the frequent starts occasions;
5. Input types: Motor directly connected, the motor belt join or input shaft coupling flange input.
Size: S/SA/SF/SAF : S37, S47, S57, S67, S77, S87, S97
Structure: Foot mounted, flange mounted, hollow shaft, CHINAMFG shaft
Type: SAZ, SA, SAF, SAZ, SAT, SS, SAS, SFS, SFS, SAFS, S

Specifications:
This gear speed reducer is a new transmission machine designed & manufactured by worm- helical gear transmission principle.
1. High mechanical efficiency: 94%-98% (depends on the transmission steps);
2. Input form: Flange input, direct motor input, shaft input;
3. Materials of gear speed reducer body: HT250 high-strength cast iron;
4. Materials of shafts: 42CrMo alloy steel;
5. Materials of gears: 20CrMnTi alloy steel;
6. Heat treatment: Tempering, cementiting, quenching;
7. Surface hardness of gears: HRC58° -62 ° ;
8. Maching precision of gears: 6-5GRADE;
9. Brand of bearings: HRB, LYC, ZWZ, NSK;
10. Noise of gear speed reducer: 60-68dB.

Parameters:

Application:
Coal equipment, ferrous metallurgy, mining machinery, paper machinery, rubber and plastics, petrochemical, lifting transportation, drink beer, food packaging, pharmacy and leather, textile dyeing and printing, environmental protection equipment, light industry machinery and so on.

FAQ:
Q1 Are you a manufacturer or trading company?
A1 A company integrated with industry and trade.

Q2 What about the shipping methods?
A2 For urgent order and light weight, you can choose the following express UPS, FedEx, TNT,DHL, EMS. For heavy weight, you can choose to deliver the goods by air or by sea to save cost.

Q3 What about the payment methods?
A3 We accept TT, LC for big amount, and for small amount, you can pay us by PayPal, Western Union, and etc.

Q4 How much does it cost to ship to my country?
A4 It depends on seasons. Fee is different in different seasons. You can consult us at all times.

Q5 What’s your delivery time?
A5 Usually we produce within 35-60 days after the payment confirmed. If you are urgent, we will urge the production department for you. /* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Are there innovations or advancements in winch drive technology that have emerged recently?

In recent years, there have been notable innovations and advancements in winch drive technology that have improved performance, efficiency, and safety. Here’s a detailed explanation of some of the recent innovations and advancements in winch drive technology:

  • Smart and Connected Winch Drives:

One of the significant advancements in winch drive technology is the integration of smart and connected features. Winch drives are now equipped with sensors, communication capabilities, and data processing capabilities, allowing them to be part of the Internet of Things (IoT) ecosystem. These smart winch drives can collect and analyze data in real-time, enabling remote monitoring, predictive maintenance, and performance optimization. They can communicate with other devices and systems, facilitating integration into larger control networks and automation systems.

  • High-Efficiency Motor Technology:

Advancements in motor technology have contributed to higher efficiency in winch drives. Brushless DC (BLDC) motors and energy-efficient AC motors are becoming more prevalent in modern winch drives. These motors offer improved power density, higher torque-to-weight ratio, and better overall energy efficiency compared to traditional brushed motors. Additionally, advancements in motor control algorithms and variable frequency drive (VFD) technology allow for precise control and optimization of motor performance, resulting in increased efficiency and reduced energy consumption.

  • Regenerative Braking:

Regenerative braking is a recent innovation in winch drive technology that improves energy efficiency. When a winch drive applies braking force to control the descent of a load, regenerative braking allows the drive to convert the braking energy into electrical energy. This electrical energy can be fed back into the power supply or stored in batteries for later use. By recovering and reusing energy that would otherwise be wasted as heat, regenerative braking reduces overall energy consumption and increases the efficiency of winch drives.

  • Advanced Control and Safety Systems:

Winch drives now incorporate advanced control and safety systems that enhance their performance and safety. These systems utilize advanced algorithms, real-time data processing, and precise feedback control to optimize the operation of winch drives. They offer features such as load monitoring, automatic load balancing, anti-sway control, and intelligent speed control. Additionally, safety features like emergency stop functions, overload protection, and fault diagnostics are integrated to ensure safe operation and prevent equipment damage or accidents.

  • Improved Materials and Construction:

Advancements in materials and construction techniques have also contributed to the development of more efficient and durable winch drives. The use of lightweight and high-strength materials, such as advanced alloys and composites, improves the power-to-weight ratio of winch drives. Precision machining and advanced manufacturing processes enhance the overall reliability and performance of winch drive components. These advancements result in winch drives that are more compact, reliable, and capable of handling higher loads while maintaining efficiency.

  • Intuitive User Interfaces:

Recent innovations in winch drive technology have focused on improving user interfaces and operator experience. Intuitive touchscreens, graphical user interfaces (GUIs), and ergonomic control panels provide operators with easy-to-use interfaces for monitoring and controlling winch drives. These user interfaces offer real-time feedback, visualizations, and diagnostic information, making it easier for operators to operate winch drives safely and efficiently.

In summary, recent years have seen significant innovations and advancements in winch drive technology. The integration of smart and connected features, high-efficiency motor technology, regenerative braking, advanced control and safety systems, improved materials and construction, and intuitive user interfaces have all contributed to improved performance, efficiency, and safety in winch drives.

winch drive

Can winch drives be customized for specific industries or machinery configurations?

Yes, winch drives can be customized to meet the specific requirements of different industries or machinery configurations. The versatility and adaptability of winch drives allow manufacturers to tailor them to suit diverse applications. Here’s a detailed explanation of how winch drives can be customized:

  • Load Capacity:

Winch drives can be customized to accommodate various load capacities. Manufacturers can design and build winch drives with different load ratings to match the specific lifting or pulling requirements of different industries or machinery configurations. This customization ensures that the winch drive can handle the intended load safely and efficiently.

  • Power Source:

Winch drives can be customized to utilize different power sources, such as electric, hydraulic, or pneumatic. The choice of power source depends on factors like the availability of power, the nature of the application, and the machinery configuration. Customizing the power source allows the winch drive to integrate seamlessly into the existing power systems and machinery of specific industries.

  • Mounting Options:

Winch drives can be customized to offer various mounting options to suit specific machinery configurations. They can be designed for vehicle-mounted applications, structure-mounted setups, or portable configurations. Customizing the mounting options ensures that the winch drive can be easily and securely installed according to the specific requirements of the industry or machinery.

  • Control Mechanisms:

The control mechanisms of winch drives can be customized to align with the preferred control methods of different industries or machinery configurations. Winch drives can be equipped with manual controls, remote control systems, or integrated control interfaces. Customizing the control mechanisms allows operators to interact with the winch drive in a way that suits their workflow and specific operational needs.

  • Environmental Considerations:

Winch drives can be customized to meet specific environmental requirements. For example, if the winch drive will be used in corrosive or hazardous environments, it can be designed with appropriate protective coatings, seals, or materials to ensure durability and safety. Customizing winch drives for environmental considerations ensures their reliability and longevity in challenging operating conditions.

  • Safety Features:

Winch drives can be customized to incorporate specific safety features based on industry regulations and machinery configurations. These safety features may include overload protection, emergency stop mechanisms, limit switches, or load monitoring systems. Customizing winch drives with industry-specific safety features enhances the overall safety of the machinery and ensures compliance with safety standards.

  • Size and Dimensions:

Winch drives can be customized in terms of size and dimensions to accommodate space limitations or specific machinery configurations. Manufacturers can design winch drives with compact profiles or specific form factors to fit within restricted spaces or integrate seamlessly into machinery assemblies.

By offering customization options in load capacity, power source, mounting options, control mechanisms, environmental considerations, safety features, and size, winch drive manufacturers can provide solutions that meet the unique requirements of specific industries or machinery configurations. Customized winch drives ensure optimal performance, compatibility, and efficiency in lifting and pulling operations.

winch drive

What is a winch drive, and how is it utilized in various applications?

A winch drive is a mechanical system designed to provide controlled pulling or lifting capabilities using a spool or drum around which a cable or rope is wound. It consists of a power source, such as an electric motor or hydraulic system, coupled with a gearbox or transmission mechanism to control the speed and torque output. Winch drives are widely utilized in various applications that require the controlled movement of heavy loads. Here’s a detailed explanation of winch drives and their utilization in different applications:

  • Off-Road Vehicles and Recovery:

Winch drives are commonly used in off-road vehicles, such as trucks, SUVs, and ATVs, for recovery purposes. In situations where a vehicle gets stuck or needs to be pulled out of challenging terrain, a winch drive mounted on the vehicle’s front or rear bumper can be employed. The winch drive’s cable is connected to a secure anchor point, and as the winch motor rotates, it winds the cable onto the drum, exerting a pulling force that helps extract the vehicle from the obstacle. Winch drives provide reliable pulling power and are essential for off-road enthusiasts, emergency services, and military applications.

  • Marine and Boating:

In marine and boating applications, winch drives are utilized for various tasks, including anchoring, mooring, and lifting heavy loads. Winches are commonly found on sailboats and powerboats to control the sails, raise and lower the anchor, or assist in docking. They are also used in larger vessels and ships for cargo handling, launching and recovering small boats or life rafts, and handling equipment on deck. The versatility and strength of winch drives make them indispensable in the maritime industry, providing precise and controlled pulling or lifting capabilities in demanding marine environments.

  • Construction and Industrial:

Winch drives play a vital role in construction and industrial settings, where the controlled movement of heavy materials and equipment is required. They are utilized in cranes, hoists, and lifting systems to perform tasks such as raising and lowering loads, positioning materials, and erecting structures. Winches can also be found in material handling equipment, such as forklifts and telehandlers, to assist in loading and unloading operations. In construction sites, winch drives are valuable for activities like tensioning cables, pulling machinery, and operating temporary lifts. The robustness and reliability of winch drives make them essential tools in the construction and industrial sectors.

  • Recreational and Entertainment:

Winch drives are utilized in various recreational and entertainment applications. In amusement parks and adventure facilities, winches are often used in zip line systems, allowing participants to traverse from one point to another safely. They are also employed in aerial lifts and chairlifts for ski resorts and mountainous areas. Winches provide controlled and reliable movement, ensuring the safety and enjoyment of individuals engaging in recreational activities. Additionally, winches are utilized in stage productions and theatrical settings to create dynamic effects, such as flying performers or moving set pieces.

  • Automotive and Garage:

In automotive and garage settings, winch drives find utility in a variety of applications. They are commonly used in car haulers and trailers to load and unload vehicles onto the platform. Winches are also employed in automotive repair and maintenance, assisting in tasks such as engine removal, vehicle recovery, and frame straightening. In home garages, winch drives can be utilized for lifting heavy objects, such as engines or equipment. The versatility and compactness of winch drives make them valuable tools for automotive enthusiasts, professional mechanics, and DIY enthusiasts.

In summary, a winch drive is a mechanical system that provides controlled pulling or lifting capabilities using a spool or drum and a power source. They are employed in various applications, including off-road vehicle recovery, marine and boating operations, construction and industrial tasks, recreational and entertainment activities, automotive and garage settings. Winch drives offer reliable and controlled movement, allowing for the handling of heavy loads in a wide range of settings and industries.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China Hot selling Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China Hot selling Helical Worm Gear Units Smart Equipment Type S Series Worm Gear Speed Reducers Shaft Helical Gearbox Speed Reducer “>
editor by Dream 2024-10-30

China best Aluminum Gearbox Housing Transmission Drive Motor Shaft Smrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer

Product Description

Smrv Worm Transmission Reductor Applied for Worm Speed Gearbox

Characteristics:

(1)Large output torque

(2) Safe, reliable, economical and durable
(3) Stable transmission, quiet operation

(4) High heat-radiating efficiency, high carrying ability
(5) Combination of 2 single-step worm gear speed reducers, meeting the requirements of super speed ratio

(6) Mechanical gearboxes are widely used in the sectors,like foodstuff, ceramics, and chemical manufacturing, as well as packing, printing, dyeing and plastics

 Technical data:

(1) Motor input power:0.06kw-15kw

(2)  Output torque:17-1971N.M

(3)  Speed ratio of worm gear peed reducer: 5/10/15/20/25/30/40/50/60/80/100

(4)  With IEC motor input flange: 56B14/71B14/80B5/90B5

 Materials:

(1)   NMRV571-NMRV090: Aluminium alloy housing

(2)   NMRV110-150: Cast iron housing

(3)   Bearing: CHINAMFG bearing & Homemade bearing

(4)   Lubricant: Synthetic & Mineral

(5)  The material of the worm mandrel is HT250, and the worm ring gear is ZQSn10-1.

(6)  With high quality homemade bearings, assembled CHINAMFG oil seals & filled with high quality lubricant.

Operation&mantenance

(1)When worm speed reducer starts to work up to200-400 hours, its lubricant should be replaced.

(2)The gearbox need to replace the oil after 4000 hours.

(3)Worm reduction gearbox is fully filled with lubricant oil after finshed assembly.

(4)Lubricanting oil should be kept enough in the casing and checked at a fixed time.

 Color:

(1)   Blue / Light blue

(2)   Silvery White

 Quality control

(1)  Quality guarantee: 1 year

(2)  Certificate of quality: ISO9001:2000

(3)   Every product must be tested before sending

 

/* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you explain the impact of winch drives on the overall efficiency of lifting systems?

The efficiency of lifting systems is significantly influenced by the choice and performance of winch drives. Winch drives play a crucial role in converting power into mechanical work to lift or move heavy loads. Here’s a detailed explanation of the impact of winch drives on the overall efficiency of lifting systems:

  • Power Transmission:

Winch drives are responsible for transmitting power from the energy source to the lifting mechanism. The efficiency of power transmission directly affects the overall efficiency of the lifting system. Well-designed winch drives minimize power losses due to friction, heat generation, or mechanical inefficiencies. By optimizing the gear system, bearings, and other mechanical components, winch drives can maximize power transmission efficiency and minimize energy waste.

  • Mechanical Advantage:

Winch drives provide a mechanical advantage that allows the lifting system to handle heavier loads with less effort. The mechanical advantage is determined by the gear ratio and drum diameter of the winch drive. By selecting an appropriate gear ratio, the winch drive can multiply the input torque, enabling the lifting system to overcome the resistance of the load more efficiently. A higher mechanical advantage reduces the strain on the power source and improves the overall efficiency of the lifting system.

  • Speed Control:

Winch drives offer speed control capabilities, allowing operators to adjust the lifting speed according to the specific requirements of the task. The ability to control the lifting speed is essential for efficient and safe operation. By utilizing winch drives with precise speed control mechanisms, the lifting system can optimize the speed to match the load, reducing unnecessary energy consumption and increasing overall efficiency.

  • Load Distribution:

Winch drives play a vital role in distributing the load evenly across the lifting system. Uneven load distribution can lead to excessive stress on certain components, reducing the overall efficiency and potentially causing equipment failure. Well-designed winch drives ensure that the load is distributed evenly, minimizing stress concentrations and maximizing the efficiency of the lifting system.

  • Control and Safety Features:

Winch drives incorporate control and safety features that contribute to the overall efficiency of the lifting system. Advanced control systems allow for precise positioning and smooth operation, minimizing unnecessary movements and reducing energy consumption. Safety features, such as overload protection or emergency stop mechanisms, help prevent accidents and equipment damage, ensuring uninterrupted and efficient operation of the lifting system.

  • Reliability and Maintenance:

The reliability and maintenance requirements of winch drives directly impact the overall efficiency of lifting systems. Well-designed winch drives with robust construction and quality components minimize the risk of breakdowns or unplanned downtime. Additionally, winch drives that are easy to maintain and service reduce the time and resources required for maintenance, maximizing the uptime and efficiency of the lifting system.

In summary, the choice and performance of winch drives have a significant impact on the overall efficiency of lifting systems. By optimizing power transmission, providing a mechanical advantage, offering speed control, ensuring load distribution, incorporating control and safety features, and prioritizing reliability and maintenance, winch drives can enhance the efficiency, productivity, and safety of lifting operations.

winch drive

How does the design of winch drives impact their performance in different environments?

The design of winch drives plays a critical role in determining their performance in different environments. Various design factors influence the reliability, efficiency, and adaptability of winch drives to specific operating conditions. Here’s a detailed explanation of how the design of winch drives impacts their performance:

  • Load Capacity and Power:

The design of winch drives directly affects their load capacity and power capabilities. Factors such as motor size, gear ratio, and drum diameter determine the maximum load capacity a winch drive can handle. The power output of the motor and the mechanical advantage provided by the gear system impact the winch drive’s ability to lift or pull heavy loads effectively. A well-designed winch drive with appropriate load capacity and power ensures optimal performance in different environments.

  • Speed and Control:

The design of winch drives influences their speed and control characteristics. The gear ratio and motor specifications determine the speed at which the winch drive can operate. Additionally, the presence of a variable speed control mechanism allows for precise and controlled movement of loads. The design should strike a balance between speed and control, depending on the specific application and operational requirements in different environments.

  • Drive System:

Winch drives can utilize different drive systems, such as electric, hydraulic, or pneumatic. The design of the drive system impacts the performance of the winch drive in different environments. Electric winch drives are commonly used due to their ease of use, precise control, and suitability for various applications. Hydraulic winch drives offer high power output and are often preferred in heavy-duty applications. Pneumatic winch drives are suitable for environments where electricity or hydraulics are not readily available. The design should align with the specific requirements and constraints of the environment in which the winch drive will be used.

  • Enclosure and Protection:

The design of the winch drive enclosure and protection features significantly impacts its performance in different environments. Winch drives used in outdoor or harsh environments should have robust enclosures that provide protection against dust, moisture, and other contaminants. Sealed or weatherproof enclosures prevent damage to internal components and ensure reliable operation. Additionally, features such as thermal protection and overload protection are designed to safeguard the winch drive from overheating or excessive strain, enhancing its performance and longevity.

  • Mounting and Installation:

The design of winch drives should consider the ease of mounting and installation. Mounting options such as bolt-on, weld-on, or integrated mounting plates offer flexibility for different installation scenarios. The design should also take into account the space constraints and mounting requirements of the specific environment. Easy and secure installation ensures proper alignment, stability, and efficient operation of the winch drive.

  • Control and Safety Features:

The design of winch drives includes control and safety features that impact their performance in different environments. Control systems can range from simple push-button controls to advanced remote controls or integrated control panels. The design should provide intuitive and user-friendly control interfaces for efficient operation. Safety features such as emergency stop mechanisms, load limiters, and overload protection are crucial to prevent accidents and ensure safe operation in various environments. The design should prioritize the incorporation of appropriate safety features based on the specific application and environmental conditions.

By considering these design factors, winch drives can be optimized for performance, reliability, and safety in different environments. A well-designed winch drive that aligns with the specific requirements of the environment will deliver efficient and effective lifting or pulling capabilities while ensuring long-term durability and functionality.

winch drive

Can you describe the various types and configurations of winch drives available in the market?

There are several types and configurations of winch drives available in the market, each designed to suit specific applications and requirements. Here’s a detailed description of the various types and configurations of winch drives:

  • Electric Winch Drives:

Electric winch drives are powered by electric motors and are widely used in various industries. They are available in different load capacities and configurations. Electric winches are known for their ease of use, precise control, and relatively low maintenance requirements. They can be mounted on vehicles, equipment, or structures and are commonly used in applications such as vehicle recovery, marine operations, construction sites, and material handling.

  • Hydraulic Winch Drives:

Hydraulic winch drives are powered by hydraulic systems and offer high pulling power for heavy-duty applications. They are commonly used in industries such as construction, oil and gas, and marine operations. Hydraulic winch drives are known for their robustness, durability, and ability to handle extreme loads. They are often mounted on large vehicles, cranes, or offshore platforms. Hydraulic winch drives require hydraulic power sources, such as hydraulic pumps, and are suitable for applications that require continuous and sustained pulling power.

  • Pneumatic Winch Drives:

Pneumatic winch drives utilize compressed air as the power source. They are mainly used in hazardous or explosive environments where electric or hydraulic power sources are not suitable. Pneumatic winch drives are commonly found in industries such as mining, oil refineries, and chemical plants. They offer a high level of safety due to the absence of electrical components and are capable of handling heavy loads in challenging environments.

  • Planetary Winch Drives:

Planetary winch drives are a popular type of winch drive known for their compact size, high efficiency, and high torque output. They consist of a central sun gear, multiple planetary gears, and an outer ring gear. The planetary gear system allows for high torque multiplication while maintaining a compact design. Planetary winch drives are commonly used in off-road vehicles, ATV winches, and small to medium-sized industrial applications.

  • Worm Gear Winch Drives:

Worm gear winch drives utilize a worm gear mechanism to achieve high gear reduction ratios. They offer excellent load holding capabilities and are commonly used in applications where precise load control and safety are paramount. Worm gear winch drives are popular in industries such as construction, theater rigging, and material handling. They are known for their self-locking feature, which prevents backdriving and provides secure load holding.

  • Capstan Winch Drives:

Capstan winch drives are designed with a rotating drum or capstan instead of a traditional spool. They are commonly used in applications that require constant tension or controlled pulling speeds, such as in marine settings for mooring operations or on fishing vessels. Capstan winch drives offer efficient and continuous pulling power and are suitable for handling ropes, cables, or lines with minimal slippage.

  • Wire Rope Winch Drives:

Wire rope winch drives are specifically designed to handle wire ropes as the lifting or pulling medium. They are equipped with drums that accommodate wire ropes of different diameters and lengths. Wire rope winch drives are commonly used in industries such as construction, mining, and offshore operations. They offer high load capacities and are suitable for heavy-duty applications that require strength, durability, and resistance to abrasion.

These are some of the various types and configurations of winch drives available in the market. Each type has its own advantages and is designed to cater to specific applications and industry requirements. When selecting a winch drive, it’s important to consider factors such as load capacity, power source, control mechanisms, and environmental conditions to ensure optimal performance and efficiency.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China best Aluminum Gearbox Housing Transmission Drive Motor Shaft Smrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China best Aluminum Gearbox Housing Transmission Drive Motor Shaft Smrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer “>
editor by Dream 2024-10-16

China factory Aluminum Gearbox Cast Iron Housing Transmission Drive Nmrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer

Product Description

Nmrv Worm Transmission Reductor Applied for Worm Speed Gearbox

Characteristics:

(1)Large output torque

(2) Safe, reliable, economical and durable
(3) Stable transmission, quiet operation

(4) High heat-radiating efficiency, high carrying ability
(5) Combination of 2 single-step worm gear speed reducers, meeting the requirements of super speed ratio

(6) Mechanical gearboxes are widely used in the sectors,like foodstuff, ceramics, and chemical manufacturing, as well as packing, printing, dyeing and plastics

 Technical data:

(1) Motor input power:0.06kw-15kw

(2)  Output torque:17-1971N.M

(3)  Speed ratio of worm gear peed reducer: 5/10/15/20/25/30/40/50/60/80/100

(4)  With IEC motor input flange: 56B14/71B14/80B5/90B5

 Materials:

(1)   NMRV571-NMRV090: Aluminium alloy housing

(2)   NMRV110-150: Cast iron housing

(3)   Bearing: CHINAMFG bearing & Homemade bearing

(4)   Lubricant: Synthetic & Mineral

(5)  The material of the worm mandrel is HT250, and the worm ring gear is ZQSn10-1.

(6)  With high quality homemade bearings, assembled CHINAMFG oil seals & filled with high quality lubricant.

Operation&mantenance

(1)When worm speed reducer starts to work up to200-400 hours, its lubricant should be replaced.

(2)The gearbox need to replace the oil after 4000 hours.

(3)Worm reduction gearbox is fully filled with lubricant oil after finshed assembly.

(4)Lubricanting oil should be kept enough in the casing and checked at a fixed time.

 Color:

(1)   Blue / Light blue

(2)   Silvery White

 Quality control

(1)  Quality guarantee: 1 year

(2)  Certificate of quality: ISO9001:2000

(3)   Every product must be tested before sending

 

/* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you provide insights into the importance of proper installation and alignment of winch drives?

Proper installation and alignment of winch drives are of utmost importance to ensure optimal performance, longevity, and safety of the system. Here’s a detailed explanation of the significance of proper installation and alignment of winch drives:

  • Optimal Performance:

Proper installation and alignment are crucial for achieving optimal performance of winch drives. Precise alignment ensures that the winch drive operates within its designed parameters, minimizing power losses and maximizing efficiency. Accurate installation of components, such as motors, gearboxes, and brakes, ensures that they are properly integrated and aligned with each other. This alignment reduces mechanical stress, minimizes friction, and allows for smooth and reliable operation of the winch drive, resulting in improved performance and productivity.

  • Extended Lifespan:

The correct installation and alignment of winch drives contribute to their longevity. When components are misaligned or improperly installed, it can lead to excessive wear, vibration, and premature failure of critical parts. Misalignment puts additional stress on bearings, shafts, gears, and other components, causing accelerated wear and reducing their lifespan. By ensuring proper alignment during installation, the load is distributed evenly, reducing mechanical stress and increasing the lifespan of the winch drive system.

  • Reduced Maintenance and Downtime:

Proper installation and alignment can significantly reduce the need for maintenance and minimize downtime. Misalignment or improper installation can cause issues such as excessive heat generation, increased friction, and misoperation of safety mechanisms. These issues can lead to frequent breakdowns and unplanned downtime, resulting in productivity losses and increased maintenance costs. By ensuring correct alignment and installation, the risk of such issues is minimized, reducing the frequency of maintenance and improving overall system uptime.

  • Enhanced Safety:

The safety of personnel and equipment is a critical consideration when it comes to winch drives. Improper installation and alignment can compromise the safety of the system. Misalignment can result in unexpected movements, excessive vibrations, or loss of control, posing risks to both operators and the surrounding environment. Proper alignment ensures that the winch drive operates within its intended parameters, reducing the likelihood of malfunctions, accidents, or equipment damage. It is essential to follow manufacturer guidelines and industry standards for installation and alignment to maintain a safe working environment.

  • Efficient Power Transmission:

Correct alignment of winch drives ensures efficient power transmission from the motor to the drum or load. Misalignment can lead to power losses, increased energy consumption, and reduced overall system efficiency. Proper alignment ensures that the power is transmitted smoothly and efficiently, minimizing energy wastage and optimizing the performance of the winch drive. This not only improves energy efficiency but also reduces operating costs over the lifespan of the system.

In summary, the proper installation and alignment of winch drives are essential for achieving optimal performance, extending the lifespan of the system, reducing maintenance and downtime, enhancing safety, and ensuring efficient power transmission. Following manufacturer guidelines, industry standards, and engaging experienced professionals during installation and alignment processes is crucial to maximize the benefits and longevity of winch drive systems.

winch drive

What maintenance practices are recommended for winch drives to ensure optimal functionality?

Proper maintenance practices are essential for ensuring the optimal functionality and longevity of winch drives. Regular maintenance helps prevent breakdowns, reduces the risk of accidents, and maximizes the performance of the winch drive. Here are some recommended maintenance practices for winch drives:

  • Inspection:

Regular visual inspections should be conducted to identify any signs of wear, damage, or loose components. Inspect the winch drive housing, motor, gears, and control components for any abnormalities. Look for leaks, corrosion, or excessive dirt accumulation. If any issues are detected, they should be addressed promptly to prevent further damage or performance degradation.

  • Lubrication:

Proper lubrication is crucial for optimal winch drive functionality. Follow the manufacturer’s guidelines for the type and frequency of lubrication. Apply lubricants to the bearings, gears, and other moving parts as recommended. Regular lubrication reduces friction, minimizes wear, and ensures smooth operation.

  • Tension Adjustment:

Check and adjust the tension of the winch drive’s cables or ropes regularly. Proper tension ensures efficient and safe operation. Follow the manufacturer’s recommendations for the appropriate tension levels and adjustment procedures. Incorrect cable tension can lead to slippage, reduced pulling power, or cable damage.

  • Electrical Connections:

Inspect the electrical connections of the winch drive for any loose or corroded terminals. Tighten or clean the connections as necessary to maintain proper electrical conductivity. Loose or faulty connections can result in power loss, erratic operation, or electrical hazards.

  • Control System Testing:

Regularly test the control system of the winch drive to ensure proper functionality. Check the operation of switches, buttons, and remote controls. Verify that the control system is responding correctly to commands and that all safety features are functioning as intended. Any issues with the control system should be addressed promptly to maintain safe and reliable operation.

  • Environmental Protection:

Take measures to protect the winch drive from harsh environmental conditions. Keep the winch drive clean and free from dirt, debris, and moisture. If the winch drive is exposed to corrosive substances or extreme temperatures, consider using protective covers or enclosures. Protecting the winch drive from environmental factors helps prevent damage and ensures optimal performance.

  • Professional Servicing:

Periodically engage in professional servicing of the winch drive. Professional technicians can perform detailed inspections, maintenance, and repairs that may require specialized knowledge or equipment. Follow the manufacturer’s recommendations regarding the frequency and scope of professional servicing to keep the winch drive in optimal condition.

It’s important to note that maintenance practices may vary depending on the specific type of winch drive and its intended application. Always refer to the manufacturer’s guidelines and instructions for the specific winch drive model to ensure proper maintenance procedures are followed.

winch drive

Can you describe the various types and configurations of winch drives available in the market?

There are several types and configurations of winch drives available in the market, each designed to suit specific applications and requirements. Here’s a detailed description of the various types and configurations of winch drives:

  • Electric Winch Drives:

Electric winch drives are powered by electric motors and are widely used in various industries. They are available in different load capacities and configurations. Electric winches are known for their ease of use, precise control, and relatively low maintenance requirements. They can be mounted on vehicles, equipment, or structures and are commonly used in applications such as vehicle recovery, marine operations, construction sites, and material handling.

  • Hydraulic Winch Drives:

Hydraulic winch drives are powered by hydraulic systems and offer high pulling power for heavy-duty applications. They are commonly used in industries such as construction, oil and gas, and marine operations. Hydraulic winch drives are known for their robustness, durability, and ability to handle extreme loads. They are often mounted on large vehicles, cranes, or offshore platforms. Hydraulic winch drives require hydraulic power sources, such as hydraulic pumps, and are suitable for applications that require continuous and sustained pulling power.

  • Pneumatic Winch Drives:

Pneumatic winch drives utilize compressed air as the power source. They are mainly used in hazardous or explosive environments where electric or hydraulic power sources are not suitable. Pneumatic winch drives are commonly found in industries such as mining, oil refineries, and chemical plants. They offer a high level of safety due to the absence of electrical components and are capable of handling heavy loads in challenging environments.

  • Planetary Winch Drives:

Planetary winch drives are a popular type of winch drive known for their compact size, high efficiency, and high torque output. They consist of a central sun gear, multiple planetary gears, and an outer ring gear. The planetary gear system allows for high torque multiplication while maintaining a compact design. Planetary winch drives are commonly used in off-road vehicles, ATV winches, and small to medium-sized industrial applications.

  • Worm Gear Winch Drives:

Worm gear winch drives utilize a worm gear mechanism to achieve high gear reduction ratios. They offer excellent load holding capabilities and are commonly used in applications where precise load control and safety are paramount. Worm gear winch drives are popular in industries such as construction, theater rigging, and material handling. They are known for their self-locking feature, which prevents backdriving and provides secure load holding.

  • Capstan Winch Drives:

Capstan winch drives are designed with a rotating drum or capstan instead of a traditional spool. They are commonly used in applications that require constant tension or controlled pulling speeds, such as in marine settings for mooring operations or on fishing vessels. Capstan winch drives offer efficient and continuous pulling power and are suitable for handling ropes, cables, or lines with minimal slippage.

  • Wire Rope Winch Drives:

Wire rope winch drives are specifically designed to handle wire ropes as the lifting or pulling medium. They are equipped with drums that accommodate wire ropes of different diameters and lengths. Wire rope winch drives are commonly used in industries such as construction, mining, and offshore operations. They offer high load capacities and are suitable for heavy-duty applications that require strength, durability, and resistance to abrasion.

These are some of the various types and configurations of winch drives available in the market. Each type has its own advantages and is designed to cater to specific applications and industry requirements. When selecting a winch drive, it’s important to consider factors such as load capacity, power source, control mechanisms, and environmental conditions to ensure optimal performance and efficiency.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China factory Aluminum Gearbox Cast Iron Housing Transmission Drive Nmrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China factory Aluminum Gearbox Cast Iron Housing Transmission Drive Nmrv Smr Series Reduction Worm Gearboxes Speed Gear Reducer “>
editor by Dream 2024-10-15

China factory Worm Gearbox and Worm Gear Speed Reducer Palletizing Equipment

Product Description

Product Description

Input Power: 0.12~15 KW;
 

Ratio: 5:1-60:1(single stage)/80:1-3600:1(2 stage);

Max. Output Torque: 4320N.m(single stage);

Input Style: Compact with motor, shaft input, motor adaptor (IEC/NEMA);

Output Style: Hollow shaft output, CHINAMFG shaft output;

Installation Position: Versatile MP.

 

Detailed Photos

 

Packaging & Shipping

Packing Images of RV Aluminium Alloy Worm Reducer
 

Inner Packing: PP bag with carton;
Outer Packing: Wooden case;
Shipment: 14-20 days CHINAMFG receiving the deposit.
 

Company Profile

CHINAMFG GROUP is the first and largest worm gearbox manufacturer in China, established in 1976, specialising in the production of a wide variety of transmission machinery. With more than 40 years experience in the industry, our assets now total 117.2 million dollars, and we have 2 subsidiary companies, 8 holding companies, and 12 joint-stock companies.

We can produce 400,000 units of worm gearboxes, 100,000 units of gear reducers, 50,000 units of other speed reducers, 150,000 units of flexible couplings, and 100,000 units of speed-reducer accessories every year.

70% of our products have been exported to 40 more countries, and our customers come from Italy, Germany, USA, Canada, Spain, UK, India, Mexico, Brazil, Argentina, Turkey, Singapore and other main industrial countries. 30% of them are OEM made for direct manufacturers of other products.

 

 

 

 

 

/* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you provide insights into the importance of proper installation and alignment of winch drives?

Proper installation and alignment of winch drives are of utmost importance to ensure optimal performance, longevity, and safety of the system. Here’s a detailed explanation of the significance of proper installation and alignment of winch drives:

  • Optimal Performance:

Proper installation and alignment are crucial for achieving optimal performance of winch drives. Precise alignment ensures that the winch drive operates within its designed parameters, minimizing power losses and maximizing efficiency. Accurate installation of components, such as motors, gearboxes, and brakes, ensures that they are properly integrated and aligned with each other. This alignment reduces mechanical stress, minimizes friction, and allows for smooth and reliable operation of the winch drive, resulting in improved performance and productivity.

  • Extended Lifespan:

The correct installation and alignment of winch drives contribute to their longevity. When components are misaligned or improperly installed, it can lead to excessive wear, vibration, and premature failure of critical parts. Misalignment puts additional stress on bearings, shafts, gears, and other components, causing accelerated wear and reducing their lifespan. By ensuring proper alignment during installation, the load is distributed evenly, reducing mechanical stress and increasing the lifespan of the winch drive system.

  • Reduced Maintenance and Downtime:

Proper installation and alignment can significantly reduce the need for maintenance and minimize downtime. Misalignment or improper installation can cause issues such as excessive heat generation, increased friction, and misoperation of safety mechanisms. These issues can lead to frequent breakdowns and unplanned downtime, resulting in productivity losses and increased maintenance costs. By ensuring correct alignment and installation, the risk of such issues is minimized, reducing the frequency of maintenance and improving overall system uptime.

  • Enhanced Safety:

The safety of personnel and equipment is a critical consideration when it comes to winch drives. Improper installation and alignment can compromise the safety of the system. Misalignment can result in unexpected movements, excessive vibrations, or loss of control, posing risks to both operators and the surrounding environment. Proper alignment ensures that the winch drive operates within its intended parameters, reducing the likelihood of malfunctions, accidents, or equipment damage. It is essential to follow manufacturer guidelines and industry standards for installation and alignment to maintain a safe working environment.

  • Efficient Power Transmission:

Correct alignment of winch drives ensures efficient power transmission from the motor to the drum or load. Misalignment can lead to power losses, increased energy consumption, and reduced overall system efficiency. Proper alignment ensures that the power is transmitted smoothly and efficiently, minimizing energy wastage and optimizing the performance of the winch drive. This not only improves energy efficiency but also reduces operating costs over the lifespan of the system.

In summary, the proper installation and alignment of winch drives are essential for achieving optimal performance, extending the lifespan of the system, reducing maintenance and downtime, enhancing safety, and ensuring efficient power transmission. Following manufacturer guidelines, industry standards, and engaging experienced professionals during installation and alignment processes is crucial to maximize the benefits and longevity of winch drive systems.

winch drive

What safety considerations should be taken into account when using winch drives?

Using winch drives involves certain safety considerations to ensure the well-being of operators, prevent accidents, and protect the equipment and the load being lifted. Here’s a detailed explanation of the safety considerations that should be taken into account when using winch drives:

  • Operator Training:

Proper training is essential for operators who will be using winch drives. They should receive comprehensive training on the safe operation of winch drives, including understanding the controls, procedures, safety features, and potential hazards. Training should cover load calculations, safe working loads, and the importance of following safety guidelines and manufacturer’s instructions.

  • Equipment Inspection:

Prior to each use, winch drives should be thoroughly inspected to ensure they are in proper working condition. This includes checking for any signs of damage, wear, or corrosion. The cables or ropes should be inspected for fraying, kinks, or other defects. Any damaged or malfunctioning components should be repaired or replaced before operating the winch drive.

  • Load Capacity:

It is crucial to adhere to the specified load capacity of the winch drive. Exceeding the maximum load capacity can lead to equipment failure, accidents, and injuries. Operators should accurately determine the weight of the load to be lifted and ensure it falls within the winch drive’s rated capacity. If the load exceeds the capacity, alternative lifting methods or equipment should be used.

  • Secure Anchoring:

Winch drives should be securely anchored to a stable and appropriate mounting point. This ensures that the winch drive remains stable during operation and prevents unintended movement. The anchoring point should be capable of withstanding the forces generated during lifting or pulling operations. Proper anchoring minimizes the risk of equipment tipping over or shifting unexpectedly.

  • Personal Protective Equipment (PPE):

Operators should wear appropriate personal protective equipment (PPE) when using winch drives. This may include safety helmets, gloves, eye protection, and high-visibility clothing. PPE helps protect operators from potential hazards such as falling objects, flying debris, or contact with moving parts. The specific PPE requirements should be determined based on the nature of the lifting operation and any applicable safety regulations.

  • Safe Operating Distance:

Operators and other personnel should maintain a safe distance from the winch drive during operation. This prevents accidental contact with moving parts or the load being lifted. Clear warning signs or barriers should be used to define the restricted area around the winch drive. Operators should never place themselves or others in the potential path of the load or in a position where they could be struck by the load in case of a failure or slippage.

  • Emergency Stop and Controls:

Winch drives should be equipped with emergency stop mechanisms or controls that allow operators to quickly halt the operation in case of an emergency. All operators should be familiar with the location and operation of the emergency stop controls. Regular testing and maintenance of these controls are essential to ensure their effectiveness in emergency situations.

  • Proper Rigging and Rigging Techniques:

Correct rigging techniques should be followed when attaching the load to the winch drive. This includes using appropriate slings, hooks, or attachments and ensuring they are properly secured. Improper rigging can lead to load instability, shifting, or falling, posing a significant safety risk. Operators should be trained in proper rigging techniques and inspect the rigging components for wear or damage before each use.

  • Regular Maintenance:

Winch drives should undergo regular maintenance as recommended by the manufacturer. This includes lubrication, inspection of cables or ropes, checking for loose bolts or connections, and verifying the functionality of safety features. Regular maintenance helps identify and address potential issues before they lead to equipment failure or accidents.

By considering these safety measures, operators can ensure the safe and effective use of winch drives, minimizing the risk of accidents, injuries, or equipment damage. It is crucial to prioritize safety at all times and to comply with applicable safety regulations and guidelines.

winch drive

What are the advantages of using a winch drive in comparison to other lifting mechanisms?

Using a winch drive as a lifting mechanism offers several advantages over other lifting mechanisms. The unique characteristics and capabilities of winch drives make them a preferred choice in various applications. Here’s a detailed explanation of the advantages of using a winch drive in comparison to other lifting mechanisms:

  • Versatility:

Winch drives offer versatility in terms of their application and adaptability to different industries. They can be utilized in a wide range of scenarios, including off-road recovery, marine operations, construction sites, and recreational activities. Winch drives can handle various load sizes and weights, making them suitable for both light and heavy lifting tasks. The ability to use winch drives in diverse environments and industries makes them a flexible and versatile choice for lifting and pulling operations.

  • Control and Precision:

Winch drives provide precise control over the lifting and pulling operation. The gearing system allows operators to adjust the speed and direction of the winch drive, enabling accurate positioning and controlled movement of the load. This level of control is particularly beneficial in applications where precise load placement or delicate handling is required. Winch drives allow for fine adjustments and smooth operation, resulting in improved precision and reduced risk of damage to the load or surrounding structures.

  • Pulling Power:

Winch drives are designed to generate significant pulling power, allowing them to handle heavy loads effectively. The power source, whether it’s an electric motor or hydraulic system, provides the necessary energy to generate substantial pulling force. This makes winch drives suitable for tasks that involve moving or lifting heavy objects, such as in construction, industrial settings, or vehicle recovery. The pulling power of winch drives gives them an advantage over other lifting mechanisms that may have limited capacity or require additional equipment for handling heavier loads.

  • Compactness and Portability:

Winch drives are generally compact and portable, which enhances their usability in various settings. They can be easily mounted on vehicles, equipment, or structures, offering mobility and convenience. Compact winch drives are particularly useful in off-road vehicles, where space may be limited. The portability of winch drives allows for flexibility in different applications and enables their use in remote or challenging locations where other lifting mechanisms may not be easily accessible.

  • Safety:

Winch drives are designed with safety features to ensure secure and controlled lifting operations. These features may include overload protection, emergency stop mechanisms, and limit switches. The braking system in winch drives provides reliable load holding, preventing unintentional load release. Additionally, winch drives can be equipped with remote control systems, allowing operators to maintain a safe distance during operation. The safety features and control mechanisms of winch drives contribute to enhanced safety and minimize the risk of accidents or injuries.

These advantages make winch drives a preferred choice over other lifting mechanisms in many applications. The versatility, control, pulling power, compactness, portability, and safety features of winch drives provide distinct benefits that cater to the specific requirements of lifting and pulling operations in various industries and scenarios.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China factory Worm Gearbox and Worm Gear Speed Reducer Palletizing Equipment “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China factory Worm Gearbox and Worm Gear Speed Reducer Palletizing Equipment “>
editor by Dream 2024-10-12

China wholesaler CHINAMFG Worm Reversible Gear Motor Gearbox Speed Reducer

Product Description

TaiBang Motor Industry Group Co., Ltd.

The main products are induction motor, reversible motor, DC brush gear motor, DC brushless gear motor, CH/CV big gear motors, Planetary gear motor ,Worm gear motor etc, which used widely in various fields of manufacturing pipelining, transportation, food, medicine, printing, fabric, packing, office, apparatus, entertainment etc, and is the preferred and matched product for automatic machine. 

1)End cover and housing of motor is made of die-casting Aluminum,which is high precision,high strength and light weight.

2)The stator consists of silicon steel sheet stator core,copper coil,and insulating material,etc.
3)The rotor consists of laminated silicon steel sheet and aluminum cast conductor.

4)The rotor shaft is made of high-performance medium carbon alloy steel and processed by special technics.There are round shaft and gear shaft.
5)The bearing and oil seal is selected from CHINAMFG brand to ensure good running performance and sealing effect.

6)The wire is made from high temperature resistant and flame retardant material.

Should you any questions,please feel free to contact Ms Susan Liu.
Please leave message or send inquiry.I will be back to you asap.

Motor Model

Specification of motor 120W 90mm Fixed speed AC gear motor
TYPE  Gear tooth Output Shaft Power
(W)
Frequency
(Hz)
Voltage
(V)
Current
(A)
Start Torque
(g.cm)
Rated Start Gearbox type
Torque
(g.cm)
Speed
(rpm)
Capacity
(μF)
Resistance Voltage
(V)
Bearing gearbox Middle Gearbox
Reversible Motor 5RK120GN 120 50 220 1.2 8500 9000 1300 8.0 500 5GN/GU-K 5GN10X
120 60 220 1.1 7200 7550  1550  7.0  500 5GN/GU-K 5GN10X

Gear Head Model 

Gearbox torque table(Kg.cm)                     (kg.cm×9.8÷100)=N.m
Output speed :RPM 500 300 200 150 120 100 75 60 50 30 20 15 10 7.5 6 5 3
Speed ratio 50Hz 3 5 7.5 10 12.5 15 20 25 30 50 75 100 150 200 250 300 500
60Hz 3.6 6 9   15 18   30 36 60 90 120 180   300 360 600
Allowed
torque
40W kg.cm 6.7 11 16 21.3 28 33 42 54 65 108 150 150 150 150 150 150 150
60W kg.cm 10 16 24 32 40 48 64 77 93 150 150 150 150 150 150 150 150
90W kg.cm 14 23 35 46 58 69 92 110 133 200 200 200 200 200 200 200 200
120W kg.cm 19 30.7 46 61 77 92 123 147 177 200 200 200 200 200 200 200 200
Note: Speed figures are based on synchronous speed, The actual output speed, under rated torque conditions, is about 10-20% less than synchronous speed, a grey background indicates output shaft of geared motor rotates in the same direction as output shaft of motor. A white background indicates rotates rotation in the opposite direction.

Above drawing is for standard screw hole.If need through hole, terminal box, or electronic magnet brake, please let me know.

Connection Diagram:

/* May 10, 2571 16:49:51 */!function(){function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

winch drive

Can you explain the impact of winch drives on the overall efficiency of lifting systems?

The efficiency of lifting systems is significantly influenced by the choice and performance of winch drives. Winch drives play a crucial role in converting power into mechanical work to lift or move heavy loads. Here’s a detailed explanation of the impact of winch drives on the overall efficiency of lifting systems:

  • Power Transmission:

Winch drives are responsible for transmitting power from the energy source to the lifting mechanism. The efficiency of power transmission directly affects the overall efficiency of the lifting system. Well-designed winch drives minimize power losses due to friction, heat generation, or mechanical inefficiencies. By optimizing the gear system, bearings, and other mechanical components, winch drives can maximize power transmission efficiency and minimize energy waste.

  • Mechanical Advantage:

Winch drives provide a mechanical advantage that allows the lifting system to handle heavier loads with less effort. The mechanical advantage is determined by the gear ratio and drum diameter of the winch drive. By selecting an appropriate gear ratio, the winch drive can multiply the input torque, enabling the lifting system to overcome the resistance of the load more efficiently. A higher mechanical advantage reduces the strain on the power source and improves the overall efficiency of the lifting system.

  • Speed Control:

Winch drives offer speed control capabilities, allowing operators to adjust the lifting speed according to the specific requirements of the task. The ability to control the lifting speed is essential for efficient and safe operation. By utilizing winch drives with precise speed control mechanisms, the lifting system can optimize the speed to match the load, reducing unnecessary energy consumption and increasing overall efficiency.

  • Load Distribution:

Winch drives play a vital role in distributing the load evenly across the lifting system. Uneven load distribution can lead to excessive stress on certain components, reducing the overall efficiency and potentially causing equipment failure. Well-designed winch drives ensure that the load is distributed evenly, minimizing stress concentrations and maximizing the efficiency of the lifting system.

  • Control and Safety Features:

Winch drives incorporate control and safety features that contribute to the overall efficiency of the lifting system. Advanced control systems allow for precise positioning and smooth operation, minimizing unnecessary movements and reducing energy consumption. Safety features, such as overload protection or emergency stop mechanisms, help prevent accidents and equipment damage, ensuring uninterrupted and efficient operation of the lifting system.

  • Reliability and Maintenance:

The reliability and maintenance requirements of winch drives directly impact the overall efficiency of lifting systems. Well-designed winch drives with robust construction and quality components minimize the risk of breakdowns or unplanned downtime. Additionally, winch drives that are easy to maintain and service reduce the time and resources required for maintenance, maximizing the uptime and efficiency of the lifting system.

In summary, the choice and performance of winch drives have a significant impact on the overall efficiency of lifting systems. By optimizing power transmission, providing a mechanical advantage, offering speed control, ensuring load distribution, incorporating control and safety features, and prioritizing reliability and maintenance, winch drives can enhance the efficiency, productivity, and safety of lifting operations.

winch drive

How does the design of winch drives impact their performance in different environments?

The design of winch drives plays a critical role in determining their performance in different environments. Various design factors influence the reliability, efficiency, and adaptability of winch drives to specific operating conditions. Here’s a detailed explanation of how the design of winch drives impacts their performance:

  • Load Capacity and Power:

The design of winch drives directly affects their load capacity and power capabilities. Factors such as motor size, gear ratio, and drum diameter determine the maximum load capacity a winch drive can handle. The power output of the motor and the mechanical advantage provided by the gear system impact the winch drive’s ability to lift or pull heavy loads effectively. A well-designed winch drive with appropriate load capacity and power ensures optimal performance in different environments.

  • Speed and Control:

The design of winch drives influences their speed and control characteristics. The gear ratio and motor specifications determine the speed at which the winch drive can operate. Additionally, the presence of a variable speed control mechanism allows for precise and controlled movement of loads. The design should strike a balance between speed and control, depending on the specific application and operational requirements in different environments.

  • Drive System:

Winch drives can utilize different drive systems, such as electric, hydraulic, or pneumatic. The design of the drive system impacts the performance of the winch drive in different environments. Electric winch drives are commonly used due to their ease of use, precise control, and suitability for various applications. Hydraulic winch drives offer high power output and are often preferred in heavy-duty applications. Pneumatic winch drives are suitable for environments where electricity or hydraulics are not readily available. The design should align with the specific requirements and constraints of the environment in which the winch drive will be used.

  • Enclosure and Protection:

The design of the winch drive enclosure and protection features significantly impacts its performance in different environments. Winch drives used in outdoor or harsh environments should have robust enclosures that provide protection against dust, moisture, and other contaminants. Sealed or weatherproof enclosures prevent damage to internal components and ensure reliable operation. Additionally, features such as thermal protection and overload protection are designed to safeguard the winch drive from overheating or excessive strain, enhancing its performance and longevity.

  • Mounting and Installation:

The design of winch drives should consider the ease of mounting and installation. Mounting options such as bolt-on, weld-on, or integrated mounting plates offer flexibility for different installation scenarios. The design should also take into account the space constraints and mounting requirements of the specific environment. Easy and secure installation ensures proper alignment, stability, and efficient operation of the winch drive.

  • Control and Safety Features:

The design of winch drives includes control and safety features that impact their performance in different environments. Control systems can range from simple push-button controls to advanced remote controls or integrated control panels. The design should provide intuitive and user-friendly control interfaces for efficient operation. Safety features such as emergency stop mechanisms, load limiters, and overload protection are crucial to prevent accidents and ensure safe operation in various environments. The design should prioritize the incorporation of appropriate safety features based on the specific application and environmental conditions.

By considering these design factors, winch drives can be optimized for performance, reliability, and safety in different environments. A well-designed winch drive that aligns with the specific requirements of the environment will deliver efficient and effective lifting or pulling capabilities while ensuring long-term durability and functionality.

winch drive

What are the advantages of using a winch drive in comparison to other lifting mechanisms?

Using a winch drive as a lifting mechanism offers several advantages over other lifting mechanisms. The unique characteristics and capabilities of winch drives make them a preferred choice in various applications. Here’s a detailed explanation of the advantages of using a winch drive in comparison to other lifting mechanisms:

  • Versatility:

Winch drives offer versatility in terms of their application and adaptability to different industries. They can be utilized in a wide range of scenarios, including off-road recovery, marine operations, construction sites, and recreational activities. Winch drives can handle various load sizes and weights, making them suitable for both light and heavy lifting tasks. The ability to use winch drives in diverse environments and industries makes them a flexible and versatile choice for lifting and pulling operations.

  • Control and Precision:

Winch drives provide precise control over the lifting and pulling operation. The gearing system allows operators to adjust the speed and direction of the winch drive, enabling accurate positioning and controlled movement of the load. This level of control is particularly beneficial in applications where precise load placement or delicate handling is required. Winch drives allow for fine adjustments and smooth operation, resulting in improved precision and reduced risk of damage to the load or surrounding structures.

  • Pulling Power:

Winch drives are designed to generate significant pulling power, allowing them to handle heavy loads effectively. The power source, whether it’s an electric motor or hydraulic system, provides the necessary energy to generate substantial pulling force. This makes winch drives suitable for tasks that involve moving or lifting heavy objects, such as in construction, industrial settings, or vehicle recovery. The pulling power of winch drives gives them an advantage over other lifting mechanisms that may have limited capacity or require additional equipment for handling heavier loads.

  • Compactness and Portability:

Winch drives are generally compact and portable, which enhances their usability in various settings. They can be easily mounted on vehicles, equipment, or structures, offering mobility and convenience. Compact winch drives are particularly useful in off-road vehicles, where space may be limited. The portability of winch drives allows for flexibility in different applications and enables their use in remote or challenging locations where other lifting mechanisms may not be easily accessible.

  • Safety:

Winch drives are designed with safety features to ensure secure and controlled lifting operations. These features may include overload protection, emergency stop mechanisms, and limit switches. The braking system in winch drives provides reliable load holding, preventing unintentional load release. Additionally, winch drives can be equipped with remote control systems, allowing operators to maintain a safe distance during operation. The safety features and control mechanisms of winch drives contribute to enhanced safety and minimize the risk of accidents or injuries.

These advantages make winch drives a preferred choice over other lifting mechanisms in many applications. The versatility, control, pulling power, compactness, portability, and safety features of winch drives provide distinct benefits that cater to the specific requirements of lifting and pulling operations in various industries and scenarios.

<img src="https://img.hzpt.com/img/gearbox/gearbox-l1.webp" alt="China wholesaler CHINAMFG Worm Reversible Gear Motor Gearbox Speed Reducer “><img src="https://img.hzpt.com/img/gearbox/gearbox-l2.webp" alt="China wholesaler CHINAMFG Worm Reversible Gear Motor Gearbox Speed Reducer “>
editor by Dream 2024-10-08

China Good quality Speed Reducer Et 3150, Ec 3150, EQ 4150 Series Gearbox for Construction Machinery, Tractor, Hydraulic System planetary gearbox elecon

Product Description

Product Description

Detailed Photos

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LBREVINI ET 3090 MN-MN1-FE-FS  
LBREVINI ET 3090 MR-MR1  
LBREVINI ET 3090 FP  
LBREVINI EQ 4090 MN-MN1-FE-FS  
LBREVINI EQ 4090 MR-MR1  
LBREVINI EQ 4090FP  
LBREVINI PD 1 090 PD  
LBREVINI PD 2090 PD  
LBREVINI PD 3090 PD  
LBREVINI PD 4090 PD  
LBREVINI EC 2090 MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 2090* MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 3090 MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 3090* MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 4090 MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 4090* MN- MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 2091 – PDA 2091,i=11.22 18KW
LBREVINI EC 2091 – PDA 2091,i=13.89 18KW
LBREVINI EC 2091 – PDA 2091,i=15.98 18KW
LBREVINI EC 2091 – PDA 2091,i=17.68 18KW
LBREVINI EC 2091 – PDA 2091,i=20.34 18KW
LBREVINI EC 2091 – PDA 2091,i=24.59 18KW
LBREVINI EC 2091 – PDA 2091,i=28.29 18KW
LBREVINI EC 2091 – PDA 2091,i=33.70 18KW
LBREVINI EC 2091 – PDA 2091,i=42.37 18KW
LBREVINI EC 2091 – PDA 2091,i=11.22 18KW
LBREVINI EC 2091 – PDA 2091,i=13.89 18KW
LBREVINI EC 2091 – PDA 2091,i=15.98 18KW
LBREVINI EC 2091 – PDA 2091,i=17.68 18KW
LBREVINI EC 2091 – PDA 2091,i=20.34 18KW
LBREVINI EC 2091 – PDA 2091,i=24.59 18KW
LBREVINI EC 2091 – PDA 2091,i=28.29 18KW
LBREVINI EC 2091 – PDA 2091,i=33.70 18KW
LBREVINI EC 2091 – PDA 2091,i=42.37 18KW
LBREVINI 48.82 EC 2091  
LBREVINI FL250 EC 2091  
LBREVINI FL350 EC 2091  
LBREVINI FL450 EC 2091  
LBREVINI FL650-FL750 EC 2091  
LBREVINI FL620.U EC 2091  
LBREVINI FL635.U EC 2091  
LBREVINI FL635.U EC 2091*  
LBREVINI EC 2091 MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EM 1150,i=3.90 40KW
LBREVINI EM 1150,i=5.14 40KW
LBREVINI EM 1150,i=6.27 40KW
LBREVINI ED 2150,i=13.65 23KW
LBREVINI ED 2150,i=16.11 23KW
LBREVINI ED 2150,i=17.99 23KW
LBREVINI ED 2150,i=20.16 23KW
LBREVINI ED 2150,i=21.95 23KW
LBREVINI ED 2150,i=26.57 23KW
LBREVINI ED 2150,i=28.28 23KW
LBREVINI ED 2150,i=30.84 23KW
LBREVINI ED 2150,i=37.27 23KW
LBREVINI ED 2150,i=45.46 23KW
LBREVINI ET 3150,i=47.78 15KW
LBREVINI ET 3150,i=56.37 15KW
LBREVINI ET 3150,i=62.96 15KW
LBREVINI ET 3150,i=70.57 15KW
LBREVINI ET 3150,i=81.9 15KW
LBREVINI ET 3150,i=93.01 15KW
LBREVINI ET 3150,i=98.96 15KW
LBREVINI ET 3150,i=107.9 15KW
LBREVINI ET 3150,i=127.4 15KW
LBREVINI ET 3150,i=137.4 15KW
LBREVINI ET 3150,i=159.4 15KW
LBREVINI ET 3150,i=185.0 15KW
LBREVINI ET 3150,i=192.7 15KW
LBREVINI ET 3150,i=223.6 15KW
LBREVINI ET 3150,i=235.0 15KW
LBREVINI ET 3150,i=270.2 15KW
LBREVINI ET 3150,i=329.6 15KW
LBREVINI EQ 4150,i=359.5 11KW
LBREVINI EQ 4150,i=391.2 11KW
LBREVINI EQ 4150,i=461.7 11KW
LBREVINI EQ 4150,i=491.4 11KW
LBREVINI EQ 4150,i=568.4 11KW
LBREVINI EQ 4150,i=645.5 11KW
LBREVINI EQ 4150,i=700.7 11KW
LBREVINI EQ 4150,i=810.4 11KW
LBREVINI EQ 4150,i=883.9 11KW
LBREVINI EQ 4150,i=1039 11KW
LBREVINI EQ 4150,i=1110 11KW
LBREVINI EQ 4150,i=1226 11KW
LBREVINI EQ 4150,i=1342 11KW
LBREVINI EQ 4150,i=1552 11KW
LBREVINI EQ 4150,i=1875 11KW
LBREVINI EQ 4150,i=2571 11KW
LBREVINI EQ 4150,i=2348 11KW
LBREVINI EQ 4150,i=2468 11KW
LBREVINI EQ 4150,i=2837 11KW
LBREVINI EQ 4150,i=3460 11KW
LBREVINI EM 1150,i=3.90 40KW
LBREVINI EM 1150,i=5.14 40KW
LBREVINI EM 1150,i=6.27 40KW
LBREVINI ED 2150,i=13.65 23KW
LBREVINI ED 2150,i=16.11 23KW
LBREVINI ED 2150,i=17.99 23KW
LBREVINI ED 2150,i=20.16 23KW
LBREVINI ED 2150,i=21.95 23KW
LBREVINI ED 2150,i=26.57 23KW
LBREVINI ED 2150,i=28.28 23KW
LBREVINI ED 2150,i=30.84 23KW
LBREVINI ED 2150,i=37.27 23KW
LBREVINI ED 2150,i=45.46 23KW
LBREVINI ET 3150,i=47.78 15KW
LBREVINI ET 3150,i=56.37 15KW
LBREVINI ET 3150,i=62.96 15KW
LBREVINI ET 3150,i=70.57 15KW
LBREVINI ET 3150,i=81.9 15KW
LBREVINI ET 3150,i=93.01 15KW
LBREVINI ET 3150,i=98.96 15KW
LBREVINI ET 3150,i=107.9 15KW
LBREVINI ET 3150,i=127.4 15KW
LBREVINI ET 3150,i=137.4 15KW
LBREVINI ET 3150,i=159.4 15KW
LBREVINI ET 3150,i=185.0 15KW
LBREVINI ET 3150,i=192.7 15KW
LBREVINI ET 3150,i=223.6 15KW
LBREVINI ET 3150,i=235.0 15KW
LBREVINI ET 3150,i=270.2 15KW
LBREVINI ET 3150,i=329.6 15KW
LBREVINI EQ 4150,i=359.5 11KW
LBREVINI EQ 4150,i=391.2 11KW
LBREVINI EQ 4150,i=461.7 11KW
LBREVINI EQ 4150,i=491.4 11KW
LBREVINI EQ 4150,i=568.4 11KW
LBREVINI EQ 4150,i=645.5 11KW
LBREVINI EQ 4150,i=700.7 11KW
LBREVINI EQ 4150,i=810.4 11KW
LBREVINI EQ 4150,i=883.9 11KW
LBREVINI EQ 4150,i=1039 11KW
LBREVINI EQ 4150,i=1110 11KW
LBREVINI EQ 4150,i=1226 11KW
LBREVINI EQ 4150,i=1342 11KW
LBREVINI EQ 4150,i=1552 11KW
LBREVINI EQ 4150,i=1875 11KW
LBREVINI EQ 4150,i=2571 11KW
LBREVINI EQ 4150,i=2348 11KW
LBREVINI EQ 4150,i=2468 11KW
LBREVINI EQ 4150,i=2837 11KW
LBREVINI EQ 4150,i=3460 11KW
LBREVINI EC 2150 – PDA 2150,i=10.73 18KW
LBREVINI EC 2150 – PDA 2150,i=14.14 18KW
LBREVINI EC 2150 – PDA 2150,i=17.99 18KW
LBREVINI EC 2150 – PDA 2150,i=18.99 18KW
LBREVINI EC 2150 – PDA 2150,i=21.95 18KW
LBREVINI EC 2150 – PDA 2150,i=25.03 18KW
LBREVINI EC 2150 – PDA 2150,i=30.53 18KW
LBREVINI EC 3150- PDA 31 50,i=48.32 15KW
LBREVINI EC 3150- PDA 31 50,i=53.97 15KW
LBREVINI EC 3150- PDA 31 50,i=63.06 15KW
LBREVINI EC 3150- PDA 31 50,i=74.41 15KW
LBREVINI EC 3150- PDA 31 50,i=83.11 15KW
LBREVINI EC 3150- PDA 31 50,i=92.52 15KW
LBREVINI EC 3150- PDA 31 50,i=98.07 15KW
LBREVINI EC 3150- PDA 31 50,i=111.8 15KW
LBREVINI EC 3150- PDA 31 50,i=122.8 15KW
LBREVINI EC 3150- PDA 31 50,i=142.5 15KW
LBREVINI EC 3150- PDA 31 50,i=149.8 15KW
LBREVINI EC 3150- PDA 31 50,i=172.2 15KW
LBREVINI EC 3150- PDA 31 50,i=210.0 15KW
LBREVINI EC 4150- PDA 4150,i=260.5 10KW
LBREVINI EC 4150- PDA 4150,i=296.9 10KW
LBREVINI EC 4150- PDA 4150,i=326.0 10KW
LBREVINI EC 4150- PDA 4150,i=350.3 10KW
LBREVINI EC 4150- PDA 4150,i=384.7 10KW
LBREVINI EC 4150- PDA 4150,i=457.2 10KW
LBREVINI EC 4150- PDA 4150,i=498.7 10KW
LBREVINI EC 4150- PDA 4150,i=555.1 10KW
LBREVINI EC 4150- PDA 4150,i=634.7 10KW
LBREVINI EC 4150- PDA 4150,i=711.0 10KW
LBREVINI EC 4150- PDA 4150,i=810.5 10KW
LBREVINI EC 4150- PDA 4150,i=890.1 10KW
LBREVINI EC 4150- PDA 4150,i=1033 10KW
LBREVINI EC 4150- PDA 4150,i=1086 10KW
LBREVINI EC 4150- PDA 4150,i=1248 10KW
LBREVINI EC 4150- PDA 4150,i=1523 10KW
LBREVINI EC 2150 – PDA 2150,i=10.73 18KW
LBREVINI EC 2150 – PDA 2150,i=14.14 18KW
LBREVINI EC 2150 – PDA 2150,i=17.99 18KW
LBREVINI EC 2150 – PDA 2150,i=18.99 18KW
LBREVINI EC 2150 – PDA 2150,i=21.95 18KW
LBREVINI EC 2150 – PDA 2150,i=25.03 18KW
LBREVINI EC 2150 – PDA 2150,i=30.53 18KW
LBREVINI EC 3150- PDA 31 50,i=48.32 15KW
LBREVINI EC 3150- PDA 31 50,i=53.97 15KW
LBREVINI EC 3150- PDA 31 50,i=63.06 15KW
LBREVINI EC 3150- PDA 31 50,i=74.41 15KW
LBREVINI EC 3150- PDA 31 50,i=83.11 15KW
LBREVINI EC 3150- PDA 31 50,i=92.52 15KW
LBREVINI EC 3150- PDA 31 50,i=98.07 15KW
LBREVINI EC 3150- PDA 31 50,i=111.8 15KW
LBREVINI EC 3150- PDA 31 50,i=122.8 15KW
LBREVINI EC 3150- PDA 31 50,i=142.5 15KW
LBREVINI EC 3150- PDA 31 50,i=149.8 15KW
LBREVINI EC 3150- PDA 31 50,i=172.2 15KW
LBREVINI EC 3150- PDA 31 50,i=210.0 15KW
LBREVINI EC 4150- PDA 4150,i=260.5 10KW
LBREVINI EC 4150- PDA 4150,i=296.9 10KW
LBREVINI EC 4150- PDA 4150,i=326.0 10KW
LBREVINI EC 4150- PDA 4150,i=350.3 10KW
LBREVINI EC 4150- PDA 4150,i=384.7 10KW
LBREVINI EC 4150- PDA 4150,i=457.2 10KW
LBREVINI EC 4150- PDA 4150,i=498.7 10KW
LBREVINI EC 4150- PDA 4150,i=555.1 10KW
LBREVINI EC 4150- PDA 4150,i=634.7 10KW
LBREVINI EC 4150- PDA 4150,i=711.0 10KW
LBREVINI EC 4150- PDA 4150,i=810.5 10KW
LBREVINI EC 4150- PDA 4150,i=890.1 10KW
LBREVINI EC 4150- PDA 4150,i=1033 10KW
LBREVINI EC 4150- PDA 4150,i=1086 10KW
LBREVINI EC 4150- PDA 4150,i=1248 10KW
LBREVINI EC 4150- PDA 4150,i=1523 10KW
LBREVINI S45 C R1 EM 1150  
LBREVINI S45 C R1 ED 2150  
LBREVINI S45 C R1 ET 3150  
LBREVINI S46 C1 EM 1150  
LBREVINI S46 C1 ED 2150  
LBREVINI S46 C1 ET 3150  
LBREVINI S65 CR1 EM 1150  
LBREVINI SU 2 EM 1150  
LBREVINI SU 2 ED 2150  
LBREVINI SU 2 ET 3150  
LBREVINI SU 2 EQ 4150  
LBREVINI 48.82 EC 2150  
LBREVINI 48.82 EC 3150  
LBREVINI 48.82 EC 4150  
LBREVINI FL250-FL350 EM 1150  
LBREVINI FL250-FL350 ED 2150  
LBREVINI FL250-FL350 ET 3150  
LBREVINI FL250-FL350 EC 2150*  
LBREVINI FL250-FL350 EC 2150  
LBREVINI FL250-FL350 EC 3150*  
LBREVINI FL250-FL350 EC 3150  
LBREVINI FL250-FL350 EC 4150*  
LBREVINI FL250-FL350 EC 4150  
LBREVINI FL450 EM 1150  
LBREVINI FL450 ED 2150  
LBREVINI FL450 ET 3150  
LBREVINI FL450 EC 2150*  
LBREVINI FL450 EC 2150  
LBREVINI FL450 EC 3150*  
LBREVINI FL450 EC 3150  
LBREVINI FL450 EC 4150*  
LBREVINI FL450 EC 4150  
LBREVINI FL650 EM 1150  
LBREVINI FL650 ED 2150  
LBREVINI FL650 ET 3150  
LBREVINI FL650 EC 2150*  
LBREVINI FL650 EC 2150  
LBREVINI FL750 EM 1150  
LBREVINI FL750 ED 2150  
LBREVINI FL750 ET 3150  
LBREVINI FL750 EC 2150*  
LBREVINI FL750 EC 2150  
LBREVINI FL960 EM 1150  
LBREVINI FL960 ED 2150  
LBREVINI FL620.U EM 1150  
LBREVINI FL620.U ED 2150  
LBREVINI FL620.U ET 3150  
LBREVINI FL620.U EQ 4150  
LBREVINI FL620.U EC 2150  
LBREVINI FL620.U EC 2150*  
LBREVINI FL620.U EC 3150  
LBREVINI FL620.U EC 3150*  
LBREVINI FL620.U EC 4150  
LBREVINI FL620.U EC 4150*  
LBREVINI FL635.U EM 1150  
LBREVINI FL635.U ED 2150  
LBREVINI FL635.U ET 3150  
LBREVINI FL635.U EQ 4150  
LBREVINI FL635.U EC 2150  
LBREVINI FL635.U EC 2150*  
LBREVINI FL635.U EC 3150  
LBREVINI FL635.U EC 3150*  
LBREVINI FL635.U EC 4150  
LBREVINI FL635.U EC 4150*  
LBREVINI FL620.10 EQ 4150  
LBREVINI FL635.10 EQ 4150  
LBREVINI ED 2150 MN-MN-FS  
LBREVINI ED 2150 MR-MR1  
LBREVINI ED 2150 FE  
LBREVINI ED 2150 FP  
LBREVINI ET 3150 MN-MN-FS  
LBREVINI ET 3150 MR-MR1  
LBREVINI ET 3150 FE  
LBREVINI ET 3150 FP  
LBREVINI EQ 4150 MN-MN-FS  
LBREVINI EQ 4150 MR-MR1  
LBREVINI EQ 4150 FE  
LBREVINI EQ 4150FP  
LBREVINI PD 2150 PD  
LBREVINI PD 3150 PD  
LBREVINI PD 4150 PD  
LBREVINI EC 2150 MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 2150* MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 3150 MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 3150* MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 4150 MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 4150* MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI ED 2155,i=19.50 23KW
LBREVINI ED 2155,i=23.40 23KW
LBREVINI ET 3155,i=47.78 15KW
LBREVINI ET 3155,i=56.37 15KW
LBREVINI ET 3155,i=62.17 15KW
LBREVINI ET 3155,i=70.57 15KW
LBREVINI ET 3155,i=80.54 15KW
LBREVINI ET 3155,i=87.31 15KW
LBREVINI ET 3155,i=100.8 15KW
LBREVINI ET 3155,i=109.1 15KW
LBREVINI ET 3155,i=122.4 15KW
LBREVINI ET 3155,i=141.4 15KW
LBREVINI ET 3155,i=161.4 15KW
LBREVINI ET 3155,i=169.7 15KW
LBREVINI ET 3155,i=185.0 15KW
LBREVINI ET 3155,i=196.8 15KW
LBREVINI ET 3155,i=223.6 15KW
LBREVINI ET 3155,i=272.7 15KW
LBREVINI ED 2155,i=19.50 23KW
LBREVINI ED 2155,i=23.40 23KW
LBREVINI ET 3155,i=47.78 15KW
LBREVINI ET 3155,i=56.37 15KW
LBREVINI ET 3155,i=62.17 15KW
LBREVINI ET 3155,i=70.57 15KW
LBREVINI ET 3155,i=80.54 15KW
LBREVINI ET 3155,i=87.31 15KW
LBREVINI ET 3155,i=100.8 15KW
LBREVINI ET 3155,i=109.1 15KW
LBREVINI ET 3155,i=122.4 15KW
LBREVINI ET 3155,i=141.4 15KW
LBREVINI ET 3155,i=161.4 15KW
LBREVINI ET 3155,i=169.7 15KW
LBREVINI ET 3155,i=185.0 15KW
LBREVINI ET 3155,i=196.8 15KW
LBREVINI ET 3155,i=223.6 15KW
LBREVINI ET 3155,i=272.7 15KW
LBREVINI EC 3155- PDA 3155,i=40.95 15KW
LBREVINI EC 3155- PDA 3155,i=45.16 15KW
LBREVINI EC 3155- PDA 3155,i=50.66 15KW
LBREVINI EC 3155- PDA 3155,i=58.50 15KW
LBREVINI EC 3155- PDA 3155,i=63.06 15KW
LBREVINI EC 3155- PDA 3155,i=70.20 15KW
LBREVINI EC 3155- PDA 3155,i=78.02 15KW
LBREVINI EC 3155- PDA 3155,i=90.09 15KW
LBREVINI EC 3155- PDA 3155,i=102.8 15KW
LBREVINI EC 3155- PDA 3155,i=108.1 15KW
LBREVINI EC 3155- PDA 3155,i=118.7 15KW
LBREVINI EC 3155- PDA 3155,i=142.5 15KW
LBREVINI EC 3155- PDA 3155,i=173.8 15KW
LBREVINI EC 3155- PDA 3155,i=40.95 15KW
LBREVINI EC 3155- PDA 3155,i=45.16 15KW
LBREVINI EC 3155- PDA 3155,i=50.66 15KW
LBREVINI EC 3155- PDA 3155,i=58.50 15KW
LBREVINI EC 3155- PDA 3155,i=63.06 15KW
LBREVINI EC 3155- PDA 3155,i=70.20 15KW
LBREVINI EC 3155- PDA 3155,i=78.02 15KW
LBREVINI EC 3155- PDA 3155,i=90.09 15KW
LBREVINI EC 3155- PDA 3155,i=102.8 15KW
LBREVINI EC 3155- PDA 3155,i=108.1 15KW
LBREVINI EC 3155- PDA 3155,i=118.7 15KW
LBREVINI EC 3155- PDA 3155,i=142.5 15KW
LBREVINI EC 3155- PDA 3155,i=173.8 15KW
LBREVINI S45 CR1 ED 2155  
LBREVINI S45 CR1 ET 3155  
LBREVINI S46 C1 ED2155  
LBREVINI S46 C1 ET 3155  
LBREVINI S65 CR1 ED 2155  
LBREVINI SU 2 ED 2155  
LBREVINI SU 2 ET 3155  
LBREVINI 48.82 EC 3155  
LBREVINI FL 250-FL 350 ED 21 55  
LBREVINI FL 250-FL 350 ET 3155  
LBREVINI FL 250-FL 350 EC 3155*  
LBREVINI FL 250-FL 350 EC 3155  
LBREVINI FL450 ED 21 55  
LBREVINI FL450 ET 3155  
LBREVINI FL450 EC 3155*  
LBREVINI FL450 EC 3155  
LBREVINI FL650-FL750 ED 2155  
LBREVINI FL650-FL750 ET 3155  
LBREVINI FL650-FL750 EC 3155*  
LBREVINI FL650-FL750 EC 3155  
LBREVINI FL620.U ED 2155  
LBREVINI FL620.U ET 3155  
LBREVINI FL620.U EC 3155*  
LBREVINI FL620.U EC 3155  
LBREVINI FL635.U ED 2155  
LBREVINI FL635.U ET 3155  
LBREVINI FL635.U EC 3155*  
LBREVINI FL635.U EC 3155  
LBREVINI ED 2155 MN-MN1-FS  
LBREVINI ED 2155 MR-MR1  
LBREVINI ED 2155 FE  
LBREVINI ED 2155 FP  
LBREVINI ET 3155 MN-MN1-FS  
LBREVINI ET 3155 MR-MR1  
LBREVINI ET 3155 FE  
LBREVINI ET 3155 FP  
LBREVINI PD 2155 PD  
LBREVINI PD 3155 PD  
LBREVINI EC 3155 MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EC 3155* MN-MR-MN1-MR1 FE-FS-FP-PDA  
LBREVINI EM 1250,i=4.04 50KW
LBREVINI EM 1250,i=5.12 50KW
LBREVINI EM 1250,i=6.00 50KW
LBREVINI ED 2250,i=14.14 30KW
LBREVINI ED 2250,i=15.59 30KW
LBREVINI ED 2250,i=17.49 30KW
LBREVINI ED 2250,i=20.20 30KW
LBREVINI ED 2250,i=22.17 30KW
LBREVINI ED 2250,i=25.6 30KW
LBREVINI ED 2250,i=30.72 30KW
LBREVINI ED 2250,i=36.00 30KW
LBREVINI ET 3250,i=43.55 20KW
LBREVINI ET 3250,i=49.49 20KW
LBREVINI ET 3250,i=58.40 20KW
LBREVINI ET 3250,i=61.23 20KW
LBREVINI ET 3250,i=70.70 20KW
LBREVINI ET 3250,i=83.43 20KW
LBREVINI ET 3250,i=90.44 20KW
LBREVINI ET 3250,i=104.4 20KW
LBREVINI ET 3250,i=114.6 20KW
LBREVINI ET 3250,i=121.2 20KW
LBREVINI ET 3250,i=146.5 20KW
LBREVINI ET 3250,i=158.8 20KW
LBREVINI ET 3250,i=184.3 20KW
LBREVINI ET 3250,i=216.0 20KW
LBREVINI ET 3250,i=261.0 20KW
LBREVINI EQ 4250,i=282.7 15KW
LBREVINI EQ 4250,i=310.4 15KW
LBREVINI EQ 4250,i=350.4 15KW
LBREVINI EQ 4250,i=405.3 15KW
LBREVINI EQ 4250,i=438.6 15KW
LBREVINI EQ 4250,i=490.7 15KW
LBREVINI EQ 4250,i=579.0 15KW
LBREVINI EQ 4250,i=627.7 15KW
LBREVINI EQ 4250,i=724.8 15KW
LBREVINI EQ 4250,i=795.4 15KW
LBREVINI EQ 4250,i=878.7 15KW
LBREVINI EQ 4250,i=1016 15KW
LBREVINI EQ 4250,i=1102 15KW
LBREVINI EQ 4250,i=1273 15KW
LBREVINI EQ 4250,i=1336 15KW
LBREVINI EQ 4250,i=1546 15KW
LBREVINI EQ 4250,i=1845 15KW
LBREVINI EQ 4250,i=1935 15KW
LBREVINI EQ 4250,i=2268 15KW
LBREVINI EQ 4250,i=2339 15KW
LBREVINI EQ 4250,i=2741 15KW
LBREVINI EM 1250,i=4.04 50KW
LBREVINI EM 1250,i=5.12 50KW
LBREVINI EM 1250,i=6.00 50KW
LBREVINI ED 2250,i=14.14 30KW
LBREVINI ED 2250,i=15.59 30KW
LBREVINI ED 2250,i=17.49 30KW
LBREVINI ED 2250,i=20.20 30KW
LBREVINI ED 2250,i=22.17 30KW
LBREVINI ED 2250,i=25.6 30KW
LBREVINI ED 2250,i=30.72 30KW
LBREVINI ED 2250,i=36.00 30KW
LBREVINI ET 3250,i=43.55 20KW
LBREVINI ET 3250,i=49.49 20KW
LBREVINI ET 3250,i=58.40 20KW
LBREVINI ET 3250,i=61.23 20KW
LBREVINI ET 3250,i=70.70 20KW
LBREVINI ET 3250,i=83.43 20KW
LBREVINI ET 3250,i=90.44 20KW
LBREVINI ET 3250,i=104.4 20KW
LBREVINI ET 3250,i=114.6 20KW
LBREVINI ET 3250,i=121.2 20KW
LBREVINI ET 3250,i=146.5 20KW
LBREVINI ET 3250,i=158.8 20KW
LBREVINI ET 3250,i=184.3 20KW
LBREVINI ET 3250,i=216.0 20KW
LBREVINI ET 3250,i=261.0 20KW
LBREVINI EQ 4250,i=282.7 15KW
LBREVINI EQ 4250,i=310.4 15KW
LBREVINI EQ 4250,i=350.4 15KW
LBREVINI EQ 4250,i=405.3 15KW
LBREVINI EQ 4250,i=438.6 15KW
LBREVINI EQ 4250,i=490.7 15KW
LBREVINI EQ 4250,i=579.0 15KW
LBREVINI EQ 4250,i=627.7 15KW
LBREVINI EQ 4250,i=724.8 15KW
LBREVINI EQ 4250,i=795.4 15KW
LBREVINI EQ 4250,i=878.7 15KW
LBREVINI EQ 4250,i=1016 15KW
LBREVINI EQ 4250,i=1102 15KW
LBREVINI EQ 4250,i=1273 15KW
LBREVINI EQ 4250,i=1336 15KW
LBREVINI EQ 4250,i=1546 15KW
LBREVINI EQ 4250,i=1845 15KW
LBREVINI EQ 4250,i=1935 15KW
LBREVINI EQ 4250,i=2268 15KW
LBREVINI EQ 4250,i=2339 15KW
LBREVINI EQ 4250,i=2741 15KW
LBREVINI EC 2250,i=11.11 18KW
LBREVINI EC 2250,i=14.08 18KW
LBREVINI EC 2250,i=16.5 18KW
LBREVINI EC 2250,i=17.92 18KW
LBREVINI EC 2250,i=21.00 18KW
LBREVINI EC 2250,i=24.93 18KW
LBREVINI EC 2250,i=29.22 18KW
LBREVINI EC 3250,i=46.78 14KW
LBREVINI EC 3250,i=52.48 14KW
LBREVINI EC 3250,i=53.76 14KW
LBREVINI EC 3250,i=60.60 14KW
LBREVINI EC 3250,i=72.05 14KW
LBREVINI EC 3250,i=80.82 14KW
LBREVINI EC 3250,i=93.32 14KW
LBREVINI EC 3250,i=102.4 14KW
LBREVINI EC 3250,i=112.0 14KW
LBREVINI EC 3250,i=118.3 14KW
LBREVINI EC 3250,i=141.9 14KW
LBREVINI EC 3250,i=166.3 14KW
LBREVINI EC 4250,i=212.1 10KW
LBREVINI EC 4250,i=228.6 10KW
LBREVINI EC 4250,i=252.2 10KW
LBREVINI EC 4250,i=282.9 10KW
LBREVINI EC 4250,i=314.9 10KW
LBREVINI EC 4250,i=363.6 10KW
LBREVINI EC 4250,i=392.0 10KW
LBREVINI EC 4250,i=432.3 10KW
LBREVINI EC 4250,i=484.9 10KW
LBREVINI EC 4250,i=559.9 10KW
LBREVINI EC 4250,i=614.5 10KW
LBREVINI EC 4250,i=709.6 10KW
LBREVINI EC 4250,i=811.9 10KW
LBREVINI EC 4250,i=857.5 10KW
LBREVINI EC 4250,i=1571 10KW
LBREVINI EC 4250,i=1206 10KW
LBREVINI EC 2250,i=11.11 18KW
LBREVINI EC 2250,i=14.08 18KW
LBREVINI EC 2250,i=16.5 18KW
LBREVINI EC 2250,i=17.92 18KW
LBREVINI EC 2250,i=21.00 18KW
LBREVINI EC 2250,i=24.93 18KW
LBREVINI EC 2250,i=29.22 18KW
LBREVINI EC 3250,i=46.78 14KW
LBREVINI EC 3250,i=52.48 14KW
LBREVINI EC 3250,i=53.76 14KW
LBREVINI EC 3250,i=60.60 14KW
LBREVINI EC 3250,i=72.05 14KW
LBREVINI EC 3250,i=80.82 14KW
LBREVINI EC 3250,i=93.32 14KW
LBREVINI EC 3250,i=102.4 14KW
LBREVINI EC 3250,i=112.0 14KW
LBREVINI EC 3250,i=118.3 14KW
LBREVINI EC 3250,i=141.9 14KW
LBREVINI EC 3250,i=166.3 14KW
LBREVINI EC 4250,i=212.1 10KW
LBREVINI EC 4250,i=228.6 10KW
LBREVINI EC 4250,i=252.2 10KW
LBREVINI EC 4250,i=282.9 10KW
LBREVINI EC 4250,i=314.9 10KW
LBREVINI EC 4250,i=363.6 10KW
LBREVINI EC 4250,i=392.0 10KW
LBREVINI EC 4250,i=432.3 10KW
LBREVINI EC 4250,i=484.9 10KW
LBREVINI EC 4250,i=559.9 10KW
LBREVINI EC 4250,i=614.5 10KW
LBREVINI EC 4250,i=709.6 10KW
LBREVINI EC 4250,i=811.9 10KW
LBREVINI EC 4250,i=857.5 10KW
LBREVINI EC 4250,i=1571 10KW
LBREVINI EC 4250,i=1206 10KW
LBREVINI S45 CR1 ED 2250  
LBREVINI S45 CR1 ET 3250  
LBREVINI S46 C1 ED 2250  
LBREVINI S46 C1 ET 3250  
LBREVINI S65 CR1 EM 1250  
LBREVINI S65 CR1 ED 2250  
LBREVINI SU 2 ET 3250  
LBREVINI SU 2 EQ 4250  
LBREVINI 48.82 EC 2250  
LBREVINI 48.82 EC 3250  
LBREVINI 48.82 EC 4250  
LBREVINI FL250-FL 350 ED 2250  
LBREVINI FL250-FL 350 ET 3250  
LBREVINI FL250-FL 350 EC 2250*  
LBREVINI FL250-FL 350 EC 2250  
LBREVINI FL250-FL 350 EC 3250*  
LBREVINI FL250-FL 350 EC 3250  
LBREVINI FL250-FL 350 EC 4250*  
LBREVINI FL250-FL 350 EC 4250  
LBREVINI FL450 ED 2250  
LBREVINI FL450 ET 3250  
LBREVINI FL450 EC 2250*  
LBREVINI FL450 EC 2250  
LBREVINI FL450 EC 3250*  
LBREVINI FL450 EC 3250  
LBREVINI FL450 EC 4250*  
LBREVINI FL450 EC 4250  
LBREVINI FL650-FL750 ED 2250  
LBREVINI FL650-FL750 ET 3250  
LBREVINI FL650-FL750 EC 2250*  
LBREVINI FL650-FL750 EC 2250  
LBREVINI FL960 EM 1250  
LBREVINI FL620.U EM 1250  
LBREVINI FL620.U ED 2250  
LBREVINI FL620.U ET 3250  
LBREVINI FL620.U EQ 4250  
LBREVINI FL620.U EC 2250  
LBREVINI FL620.U EC 2250*  
LBREVINI FL620.U EC 3250  
LBREVINI FL620.U EC 3250*  
LBREVINI FL620.U EC 4250  
LBREVINI FL620.U EC 4250*  
LBREVINI FL635.U EM 1250  
LBREVINI FL635.U ED 2250  
LBREVINI FL635.U ET 3250  
LBREVINI FL635.U EQ 4250  
LBREVINI FL635.U EC 2250  
LBREVINI FL635.U EC 2250*  
LBREVINI FL635.U EC 3250  
LBREVINI FL635.U EC 3250*  
LBREVINI FL635.U EC 4250  
LBREVINI FL635.U EC 4250*  
LBREVINI FL620.10 EQ 4250  
LBREVINI FL635.10 EQ 4250  
LBREVINI ED 2250 MN-MN1-FS  
LBREVINI ED 2250 FE  
LBREVINI ED 2250 FP  
LBREVINI ET 3250 MN-MN1-FS  
LBREVINI ET 3250 FE  
LBREVINI ET 3250 FP  
LBREVINI EQ 4250 MN-MN1-FS  
LBREVINI EQ 4250 FE  
LBREVINI EQ 4250 FP  
LBREVINI EC 2250 MN-MN1-FE- FS-FP  
LBREVINI EC 2250* MN-MN1-FE- FS-FP  
LBREVINI EC 3250MN-MN1-FE- FS-FP  
LBREVINI EC 3250* MN-MN1-FE- FS-FP  
LBREVINI EC 4250 MN-MN1-FE-FS-FP  
LBREVINI EC 4250* MN-MN1-FE-FS-FP  
LBREVINI ED 2255,i=16.48 30KW
LBREVINI ED 2255,i=20.40 30KW
LBREVINI ED 2255,i=23.47 30KW
LBREVINI ED 2255,i=25.86 30KW
LBREVINI ED 2255,i=27.96 30KW
LBREVINI ED 2255,i=29.75 30KW
LBREVINI ED 2255,i=30.30 30KW
LBREVINI ED 2255,i=35.43 30KW
LBREVINI ED 2255,i=41.52 30KW
LBREVINI ED 2255,i=44.54 30KW
LBREVINI ED 2255,i=52.20 30KW
LBREVINI ET 3255,i=57.69 20KW
LBREVINI ET 3255,i=68.08 20KW
LBREVINI ET 3255,i=71.41 20KW
LBREVINI ET 3255,i=84.26 20KW
LBREVINI ET 3255,i=90.50 20KW
LBREVINI ET 3255,i=105.5 20KW
LBREVINI ET 3255,i=115.5 20KW
LBREVINI ET 3255,i=122.4 20KW
LBREVINI ET 3255,i=144.5 20KW
LBREVINI ET 3255,i=155.1 20KW
LBREVINI ET 3255,i=183.2 20KW
LBREVINI ET 3255,i=202.7 20KW
LBREVINI ET 3255,i=230.3 20KW
LBREVINI ET 3255,i=256.9 20KW
LBREVINI ET 3255,i=267.3 20KW
LBREVINI ET 3255,i=322.9 20KW
LBREVINI EQ 4255,i=346.1 15KW
LBREVINI EQ 4255,i=404.1 15KW
LBREVINI EQ 4255,i=435.6 15KW
LBREVINI EQ 4255,i=505.6 15KW
LBREVINI EQ 4255,i=545.3 15KW
LBREVINI EQ 4255,i=632.9 15KW
LBREVINI EQ 4255,i=734.5 15KW
LBREVINI EQ 4255,i=802.1 15KW
LBREVINI EQ 4255,i=887.5 15KW
LBREVINI EQ 4255,i=969.1 15KW
LBREVINI EQ 4255,i=1125 15KW
LBREVINI EQ 4255,i=1275 15KW
LBREVINI EQ 4255,i=1382 15KW
LBREVINI EQ 4255,i=1541 15KW
LBREVINI EQ 4255,i=1862 15KW
LBREVINI EQ 4255,i=1938 15KW
LBREVINI EQ 4255,i=2341 15KW
LBREVINI EQ 4255,i=2744 15KW
LBREVINI ED 2255,i=16.48 30KW
LBREVINI ED 2255,i=20.40 30KW
LBREVINI ED 2255,i=23.47 30KW
LBREVINI ED 2255,i=25.86 30KW
LBREVINI ED 2255,i=27.96 30KW
LBREVINI ED 2255,i=29.75 30KW
LBREVINI ED 2255,i=30.30 30KW
LBREVINI ED 2255,i=35.43 30KW
LBREVINI ED 2255,i=41.52 30KW
LBREVINI ED 2255,i=44.54 30KW
LBREVINI ED 2255,i=52.20 30KW
LBREVINI ET 3255,i=57.69 20KW
LBREVINI ET 3255,i=68.08 20KW
LBREVINI ET 3255,i=71.41 20KW
LBREVINI ET 3255,i=84.26 20KW
LBREVINI ET 3255,i=90.50 20KW
LBREVINI ET 3255,i=105.5 20KW
LBREVINI ET 3255,i=115.5 20KW
LBREVINI ET 3255,i=122.4 20KW
LBREVINI ET 3255,i=144.5 20KW
LBREVINI ET 3255,i=155.1 20KW
LBREVINI ET 3255,i=183.2 20KW
LBREVINI ET 3255,i=202.7 20KW
LBREVINI ET 3255,i=230.3 20KW
LBREVINI ET 3255,i=256.9 20KW
LBREVINI ET 3255,i=267.3 20KW
LBREVINI ET 3255,i=322.9 20KW
LBREVINI EQ 4255,i=346.1 15KW
LBREVINI EQ 4255,i=404.1 15KW
LBREVINI EQ 4255,i=435.6 15KW
LBREVINI EQ 4255,i=505.6 15KW
LBREVINI EQ 4255,i=545.3 15KW
LBREVINI EQ 4255,i=632.9 15KW
LBREVINI EQ 4255,i=734.5 15KW
LBREVINI EQ 4255,i=802.1 15KW
LBREVINI EQ 4255,i=887.5 15KW
LBREVINI EQ 4255,i=969.1 15KW
LBREVINI EQ 4255,i=1125 15KW
LBREVINI EQ 4255,i=1275 15KW
LBREVINI EQ 4255,i=1382 15KW
LBREVINI EQ 4255,i=1541 15KW
LBREVINI EQ 4255,i=1862 15KW
LBREVINI EQ 4255,i=1938 15KW
LBREVINI EQ 4255,i=2341 15KW
LBREVINI EQ 4255,i=2744 15KW
LBREVINI EC 3255,i=49.45 14KW
LBREVINI EC 3255,i=61.21 14KW
LBREVINI EC 3255,i=70.42 14KW
LBREVINI EC 3255,i=77.57 14KW
LBREVINI EC 3255,i=94.26 14KW
LBREVINI EC 3255,i=96.51 14KW
LBREVINI EC 3255,i=108.4 14KW
LBREVINI EC 3255,i=129.2 14KW
LBREVINI EC 3255,i=137.4 14KW
LBREVINI EC 3255,i=163.7 14KW
LBREVINI EC 3255,i=205.8 14KW
LBREVINI EC 4255,i=266.5 10KW
LBREVINI EC 4255,i=314.5 10KW
LBREVINI EC 4255,i=346.4 10KW
LBREVINI EC 4255,i=389.3 10KW
LBREVINI EC 4255,i=456.9 10KW
LBREVINI EC 4255,i=487.3 10KW
LBREVINI EC 4255,i=565.5 10KW
LBREVINI EC 4255,i=650.7 10KW
LBREVINI EC 4255,i=683.4 10KW
LBREVINI EC 4255,i=786.2 10KW
LBREVINI EC 4255,i=936.4 10KW
LBREVINI EC 4255,i=982.1 10KW
LBREVINI EC 4255,i=1064 10KW
LBREVINI EC 4255,i=1187 10KW
LBREVINI EC 4255,i=1492 10KW
LBREVINI EC 4255,i=1748 10KW
LBREVINI EC 3255,i=49.45 14KW
LBREVINI EC 3255,i=61.21 14KW
LBREVINI EC 3255,i=70.42 14KW
LBREVINI EC 3255,i=77.57 14KW
LBREVINI EC 3255,i=94.26 14KW
LBREVINI EC 3255,i=96.51 14KW
LBREVINI EC 3255,i=108.4 14KW
LBREVINI EC 3255,i=129.2 14KW
LBREVINI EC 3255,i=137.4 14KW
LBREVINI EC 3255,i=163.7 14KW
LBREVINI EC 3255,i=205.8 14KW
LBREVINI EC 4255,i=266.5 10KW
LBREVINI EC 4255,i=314.5 10KW
LBREVINI EC 4255,i=346.4 10KW
LBREVINI EC 4255,i=389.3 10KW
LBREVINI EC 4255,i=456.9 10KW
LBREVINI EC 4255,i=487.3 10KW
LBREVINI EC 4255,i=565.5 10KW
LBREVINI EC 4255,i=650.7 10KW
LBREVINI EC 4255,i=683.4 10KW
LBREVINI EC 4255,i=786.2 10KW
LBREVINI EC 4255,i=936.4 10KW
LBREVINI EC 4255,i=982.1 10KW
LBREVINI EC 4255,i=1064 10KW
LBREVINI EC 4255,i=1187 10KW
LBREVINI EC 4255,i=1492 10KW
LBREVINI EC 4255,i=1748 10KW
LBREVINI S45 CR1 ED 2255  
LBREVINI S45 CR1 ET 3255  
LBREVINI S45 CR1 EQ 4255  
LBREVINI S46 C1 ED 2255  
LBREVINI S46 C1 ET 3255  
LBREVINI S46 C1 EQ 4255  
LBREVINI S65 CR1 ED 2255  
LBREVINI SU 2 ET 3255  
LBREVINI SU 2 EQ 4255  
LBREVINI 48.82 EC 3255  
LBREVINI 48.82 EC 4255  
LBREVINI FL250-FL 350 ED 2255  
LBREVINI FL250-FL 350 ET 3255  
LBREVINI FL250-FL 350 EQ 4255  
LBREVINI FL250-FL 350 EC 3255  
LBREVINI FL250-FL 350 EC 4255  
LBREVINI FL450 ED 2255  
LBREVINI FL450 ET 3255  
LBREVINI FL450 EQ 4255  
LBREVINI FL450 EC 3255  
LBREVINI FL450 EC 4255  
LBREVINI FL650-FL750 ED 2255  
LBREVINI FL650-FL750 ET 3255  
LBREVINI FL650-FL750 EQ 4255  
LBREVINI FL650-FL750 EC 3255  
LBREVINI FL650-FL750 EC 4255  
LBREVINI FL960 ED 2255  
LBREVINI FL620.U ED 2255  
LBREVINI FL620.U ET 3255  
LBREVINI FL620.U EQ 4255  
LBREVINI FL620.U EC 3255  
LBREVINI FL620.U EC 3255*  
LBREVINI FL620.U EC 4255  
LBREVINI FL620.U EC 4255*  
LBREVINI FL635.U ED 2255  
LBREVINI FL635.U ET 3255  
LBREVINI FL635.U EQ 4255  
LBREVINI FL635.U EC 3255  
LBREVINI FL635.U EC 3255*  
LBREVINI FL635.U EC 4255  
LBREVINI FL635.U EC 4255*  
LBREVINI FL620.10 EQ 4255  
LBREVINI FL635.10 EQ 4255  
LBREVINI ED 2255 MN-MN1-FS-FP  
LBREVINI ED 2255 FE  
LBREVINI ET 3255 MN-MN 1-FS-FP  
LBREVINI ET 3255 FE  
LBREVINI EQ 4255. MN-MN1-FS-FP  
LBREVINI EQ 4255 FE  
LBREVINI EC 3255 MN-MN1-FE-FS-FP  
LBREVINI EC 4255 MN-MN1-FE-FS-FP  
LBREVINI ED 2320,i=19.95 30KW
LBREVINI ED 2320,i=24.69 30KW
LBREVINI ED 2320,i=28.41 30KW
LBREVINI ED 2320,i=33.84 30KW
LBREVINI ED 2320,i=42.54 30KW
LBREVINI ET 3320,i=69.83 20KW
LBREVINI ET 3320,i=82.40 20KW
LBREVINI ET 3320,i=86.43 20KW
LBREVINI ET 3320,i=103.2 20KW
LBREVINI ET 3320,i=117.3 20KW
LBREVINI ET 3320,i=127.7 20KW
LBREVINI ET 3320,i=148.2 20KW
LBREVINI ET 3320,i=170.5 20KW
LBREVINI ET 3320,i=179.0 20KW
LBREVINI ET 3320,i=206.0 20KW
LBREVINI ET 3320,i=245.3 20KW
LBREVINI ED 2320,i=19.95 30KW
LBREVINI ED 2320,i=24.69 30KW
LBREVINI ED 2320,i=28.41 30KW
LBREVINI ED 2320,i=33.84 30KW
LBREVINI ED 2320,i=42.54 30KW
LBREVINI ET 3320,i=69.83 20KW
LBREVINI ET 3320,i=82.40 20KW
LBREVINI ET 3320,i=86.43 20KW
LBREVINI ET 3320,i=103.2 20KW
LBREVINI ET 3320,i=117.3 20KW
LBREVINI ET 3320,i=127.7 20KW
LBREVINI ET 3320,i=148.2 20KW
LBREVINI ET 3320,i=170.5 20KW
LBREVINI ET 3320,i=179.0 20KW
LBREVINI ET 3320,i=206.0 20KW
LBREVINI ET 3320,i=245.3 20KW
LBREVINI S45 CR1 ED 2320  
LBREVINI S45 CR1 ET 3320  
LBREVINI S46 C1 ED 2320  
LBREVINI S46 C1 ET 3320  
LBREVINI S65 CR1 ED 2320  
LBREVINI SU 2 ET 3320  
LBREVINI FL250-FL 350 ED 2320  
LBREVINI FL250-FL 350 ET 3320  
LBREVINI FL450 ED 2320  
LBREVINI FL450 ET 3320  
LBREVINI FL650-FL750 ED 2320  
LBREVINI FL650-FL750 ET 3320  
LBREVINI FL620.U ED 2320  
LBREVINI FL620.U ET 3320  
LBREVINI FL635.10 ED 2320  
LBREVINI FL635.10 ET 3320  
LBREVINI ED 2320 FE  
LBREVINI ET 3320 FE  
LBREVINI EM 1571 MN  
LBREVINI EM 1571 MR  
LBREVINI EM 1571 FE  
LBREVINI EM 1571 FS  
LBREVINI ED 2571 MN  
LBREVINI ED 2571 MR  
LBREVINI ED 2571 FE  
LBREVINI ED 2571 FS  
LBREVINI EC 2571 MN  
LBREVINI EC 2571 MR  
LBREVINI EC 2571 FE  
LBREVINI EC 2571 FS  
LBREVINI ET 3571 MN  
LBREVINI ET 3571 MR  
LBREVINI ET 3571 FE  
LBREVINI ET 3571 FS  
LBREVINI EC 3571 MN  
LBREVINI EC 3571 MR  
LBREVINI EC 3571 FE  
LBREVINI EC 3571 FS  
LBREVINI EC 4571 MN  
LBREVINI EC 4571 MR  
LBREVINI EC 4571 FE  
LBREVINI EC 4571 FS  
LBREVINI PD 101 0 MR1  
LBREVINI PD 2571 MR1  
LBREVINI PD 301 0 MR1  
LBREVINI PDA 2571 MR1  
LBREVINI PDA 3571 MR1  
LBREVINI PDA 4571 MR1  
LBREVINI EM 1571 MR  
LBREVINI EM 1571 FE  
LBREVINI EM 1571 FS  
LBREVINI EM 1571 FP  
LBREVINI ED 2571 MR  
LBREVINI ED 2571 FE  
LBREVINI ED 2571 FS  
LBREVINI ED 2571 FP  
LBREVINI EC 2571 MR  
LBREVINI EC 2571 FE  
LBREVINI EC 2571 FS  
LBREVINI EC 2571 FP  
LBREVINI ET 3571 MR  
LBREVINI ET 3571 FE  
LBREVINI ET 3571 FS  
LBREVINI ET 3571 FP  
LBREVINI EC 3571 MR  
LBREVINI EC 3571 FE  
LBREVINI EC 3571 FS  
LBREVINI EC 3571 FP  
LBREVINI EQ 4571 MR  
LBREVINI EQ 4571 FE  
LBREVINI EQ 4571 FS  
LBREVINI EQ 4571 FP  
LBREVINI EC 4571 MR  
LBREVINI EC 4571 FE  
LBREVINI EC 4571 FS  
LBREVINI EC 4571 FP  
LBREVINI PD 1571 MR1  
LBREVINI PD 2571 MR1  
LBREVINI PD 3571 MR1  
LBREVINI PD 4571 MR1  
LBREVINI PDA 2571 MR1  
LBREVINI PDA 3571 MR1  
LBREVINI ED 2030 MR  
LBREVINI ED 2030 FE  
LBREVINI ED 2030 FS  
LBREVINI ET 3030 MR  
LBREVINI ET 3030 FE  
LBREVINI ET 3030 FS  
LBREVINI EC 3030 MR  
LBREVINI EC 3030 FE  
LBREVINI EC 3030 FS  
LBREVINI EQ 4030 MR  
LBREVINI EQ 4030 FE  
LBREVINI EQ 4030 FS  
LBREVINI EC 4030 MR  
LBREVINI EC 4030 FE  
LBREVINI EC 4030 FS  
LBREVINI PD 2030 MR1  
LBREVINI PD 3030 MR1  
LBREVINI PD 4030 MR1  
LBREVINI PDA 3030 MR1  
LBREVINI PDA 4030 MR1  
LBREVINI ED 2040 MN  
LBREVINI ET 3040 MN  
LBREVINI EC 3040 MN  
LBREVINI EQ 4040 MN  
LBREVINI EC 4040 MN  
LBREVINI EM 1045 MR  
LBREVINI EM 1045 FE  
LBREVINI EM 1045 FS  
LBREVINI EM 1045 FP  
LBREVINI ED 2045 FE  
LBREVINI ED 2045 FS  
LBREVINI ED 2045 FP  
LBREVINI EC 2045 MR  
LBREVINI EC 2045 FE  
LBREVINI EC 2045 FS  
LBREVINI EC 2045 FP  
LBREVINI ET 3045 MR  
LBREVINI ET 3045 FE  
LBREVINI ET 3045 FS  
LBREVINI ET 3045 FP  
LBREVINI EC 3045 MR  
LBREVINI EC 3045 FE  
LBREVINI EC 3045 FS  
LBREVINI EC 3045 FP  
LBREVINI EQ 4045 MR  
LBREVINI EQ 4045 FE  
LBREVINI EQ 4045 FS  
LBREVINI EQ 4045 FP  
LBREVINI EC 4045 MR  
LBREVINI EC 4045 FE  
LBREVINI EC 4045 FS  
LBREVINI EC 4045 FP  
LBREVINI PD 1045 MR1  
LBREVINI PD 2045 MR1  
LBREVINI PD 3045 MR1  
LBREVINI PD 4045 MR1  
LBREVINI PDA 2045 MR1  
LBREVINI PDA 3045 MR1  
LBREVINI PDA 4045 MR1  
LBREVINI EM 1046 MN  
LBREVINI ED 2046 MN  
LBREVINI EC 2046 MN  
LBREVINI ET 3046 MN  
LBREVINI EC 3046 MN  
LBREVINI EQ 4046 MN  
LBREVINI EC 4046 MN  
LBREVINI EM 1065 MN  
LBREVINI EM 1065 FE  
LBREVINI EM 1065 FS  
LBREVINI EM 1065 FP  
LBREVINI ED 2065 MN  
LBREVINI ED 2065 FE  
LBREVINI ED 2065 FS  
LBREVINI ED 2065 FP  
LBREVINI EC 2065 MN  
LBREVINI EC 2065 FE  
LBREVINI EC 2065 FS  
LBREVINI EC 2065 FP  
LBREVINI ET 3065 MN  
LBREVINI ET 3065 FE  
LBREVINI ET 3065 FS  
LBREVINI ET 3065 FP  
LBREVINI EC 3065 MN  
LBREVINI EC 3065 FE  
LBREVINI EC 3065 FS  
LBREVINI EC 3065 FP  
LBREVINI EQ 4065 MN  
LBREVINI EQ 4065 FE  
LBREVINI EQ 4065 FS  
LBREVINI EQ 4065 FP  
LBREVINI EC 4065 MN  
LBREVINI EC 4065 FE  
LBREVINI EC 4065 FS  
LBREVINI EC 4065 FP  
LBREVINI PD 1065 MR1  
LBREVINI PD 2065 MR1  
LBREVINI P D 3065 MR1  
LBREVINI PD 4065 MR1  
LBREVINI PDA 2065 MR1  
LBREVINI PDA 3065 MR1  
LBREVINI PDA 4065 MR1  
LBREVINI EM 1090 MN  
LBREVINI EM 1090 MR  
LBREVINI EM 1090 FE  
LBREVINI EM 1090 FS  
LBREVINI EM 1090 FP  
LBREVINI ED 2090 MN  
LBREVINI ED 2090 MR  
LBREVINI ED 2090 FE  
LBREVINI ED 2090 FS  
LBREVINI ED 2090 FP  
LBREVINI EC 2090 MN  
LBREVINI EC 2090 MR  
LBREVINI EC 2090 FE  
LBREVINI EC 2090 FS  
LBREVINI EC 2090 FP  
LBREVINI ET 3090 MN  
LBREVINI ET 3090 MR  
LBREVINI ET 3090 FE  
LBREVINI ET 3090 FS  
LBREVINI ET 3090 FP  
LBREVINI EC 3090 MN  
LBREVINI EC 3090 MR  
LBREVINI EC 3090 FE  
LBREVINI EC 3090 FS  
LBREVINI EC 3090 FP  
LBREVINI EQ 4090 MN  
LBREVINI EQ 4090 MR  
LBREVINI EQ 4090 FE  
LBREVINI EQ 4090 FS  
LBREVINI EQ 4090 FP  
LBREVINI EC 4090 MN  
LBREVINI EC 4090 MR  
LBREVINI EC 4090 FE  
LBREVINI EC 4090 FS  
LBREVINI EC 4090 FP  
LBREVINI PD 1090 MR1  
LBREVINI PD 2090 MR1  
LBREVINI PD 3090 MR1  
LBREVINI PD 4090 MR1  
LBREVINI PDA 2090 MR1  
LBREVINI PDA 3090 MR1  
LBREVINI PDA 4090 MR1  
LBREVINI EM 1150 MN  
LBREVINI EM 1150 MR  
LBREVINI EM 1150 FE  
LBREVINI EM 1150 FS  
LBREVINI EM 1150 FP  
LBREVINI ED 2150 MN  
LBREVINI ED 2150 MR  
LBREVINI ED 2150 FE  
LBREVINI ED 2150 FS  
LBREVINI ED 2150 FP  
LBREVINI EC 2150 MN  
LBREVINI EC 2150 MR  
LBREVINI EC 2150 FE  
LBREVINI EC 2150 FS  
LBREVINI EC 2150 FP  
LBREVINI ET 3150 MN  
LBREVINI ET 3150 MR  
LBREVINI ET 3150 FE  
LBREVINI ET 3150 FS  
LBREVINI ET 3150 FP  
LBREVINI EC 3150 MN  
LBREVINI EC 3150 MR  
LBREVINI EC 3150 FE  
LBREVINI EC 3150 FS  
LBREVINI EC 3150 FP  
LBREVINI EQ 4150 MN  
LBREVINI EQ 4150 MR  
LBREVINI EQ 4150 FE  
LBREVINI EQ 4150 FS  
LBREVINI EQ 4150 FP  
LBREVINI EC 4150 MN  
LBREVINI EC 4150 MR  
LBREVINI EC 4150 FE  
LBREVINI EC 4150 FS  
LBREVINI EC 4150 FP  
LBREVINI PD 1150 MR1  
LBREVINI PD 21 50 MR1  
LBREVINI PD 3150 MR1  
LBREVINI PD 4150 MR1  
LBREVINI PDA 2150 MR1  
LBREVINI PDA 3150 MR1  
LBREVINI PDA 4150 MR1  
LBREVINI EM 1250 MN  
LBREVINI EM 1250 FE  
LBREVINI EM 1250 FS  
LBREVINI EM 1250 FP  
LBREVINI ED 2250 MN  
LBREVINI ED 2250 FE  
LBREVINI ED 2250 FS  
LBREVINI ED 2250 FP  
LBREVINI EC 2250 MN  
LBREVINI EC 2250 FE  
LBREVINI EC 2250 FS  
LBREVINI EC 2250 FP  
LBREVINI ET 3250 MN  
LBREVINI ET 3250 FE  
LBREVINI ET 3250 FS  
LBREVINI ET 3250 FP  
LBREVINI EC 3250 MN  
LBREVINI EC 3250 FE  
LBREVINI EC 3250 FS  
LBREVINI EC 3250 FP  
LBREVINI EQ 4250 MN  
LBREVINI EQ 4250 FE  
LBREVINI EQ 4250 FS  
LBREVINI EQ 4250 FP  
LBREVINI EC 4250 MN  
LBREVINI EC 4250 FE  
LBREVINI EC 4250 FS  
LBREVINI EC 4250 FP  
LBREVINI ED 2320 FE  
LBREVINI ET 3320 FE  

FAQ

—Why do you choose LOYAL?
LOYAL is a very professional supplier of replacement parts for piston pumps, motors, concrete pump spare parts, gearbox, cylinders, gear pumps and so on
 LOYALmajor technicians have 20 years experience. We are not only supplying products to you, but also providing you 
benefits and useful suggestion about goods maintenance.

—How about quality of products from LOYAL?
We always pay more attention about quality of our goods from raw material to machining, especially heat treatment to control our quality and precision parts, 100% interchangeable with origins.  Stable temperature and enough time heat treatment are strictly controlled by our suppliers to make parts  durable.
Warranty: 1 year

—What about delivery and service from LOYAL?
We offer all customers quick response about all inquiries every time. We stock plenty of spare parts, hydraulic pumps and hydraulic motors.  If products you demanded in stock, we can delivery in 3 working days after your payment. 
In case the products you needed are not in current stock, we can prepare in 2-4 weeks after your payment for hydraulic cylinders, gearbox and gear pumps, in 3-7 days for new hydraulic pumps,hydraulic motors, in 15-20 days for rebuilt hydraulic pumps,hydraulic motors.

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Machinery
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Expansion
Gear Shape: Conical – Cylindrical Gear
Step: Three-Step
Samples:
US$ 1800/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

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Customized Request

planetarygearbox

Benefits of a Planetary Gearbox With Output Shaft

The output shaft of a Planetary Gearbox connects to the driven wheels, while the input shaft comes from the engine. These gears are interlinked and create a wide range of gear reductions, which are necessary to get a vehicle rolling comfortably. Gear reductions are the place where the various “gears” are located. Here are some examples. They can help you determine what you need for your vehicle. You might also want to learn about planetary gears.

Planetary gearboxes

Modern cars are most likely equipped with planetary gearboxes. If you’re unsure if your vehicle uses planetary gears, you should first consult your car’s owner’s manual. If not, contact your dealership’s service department for more information. Otherwise, you can do a quick search on the internet to find out whether your car has a planetary gearbox. These gearboxes are generally more complex than ordinary gears. Additionally, they are equipped with more parts and require lubrication.
In addition to their low noise levels, planetary gearboxes are also remarkably efficient at transmission. These features make them ideal for applications requiring high torque and small footprints. Unfortunately, there are many different types of planetary gearboxes on the market, making it difficult to find the right one. The following article will give you some guidelines to help you choose the right planetary gearbox for your needs. Let’s take a look!

Planetary gears

A planetary gearbox has two main components: the sun gear (also known as the central or input) and the planet gears (also known as outer or peripheral). These gears are connected together by a carrier to the output shaft of the machine. In some applications, it is necessary to use a planetary gearbox with lubrication to prevent wear and tear. A planetary gearbox also has a small ring gear that helps hold the planet gears together.
The main advantage of a planetary gearbox is that it uses several teeth that engage at once, allowing for high-speed reduction with a small number of gears. Because the gears are relatively small, they have lower inertia than their larger counterparts. Planetary gearboxes are compact, which makes them popular for space-constrained applications. Because of their compact size and efficiency, planetary gearboxes are also commonly used in motor vehicles.

Planetary gearboxes with output shaft

For high-speed, dynamic applications, planetary gearbox units with output shaft provide the optimal solution. Thanks to their low inertia, these gearheads deliver superior performance in many industrial applications. Additionally, their wide range of variants allows users to select the perfect product for their application. This article examines some of the key benefits of planetary gearboxes with output shaft. Read on to learn more.
The planetary gearbox has two major components: a sun gear and planet gears. The sun gear is usually the input gear, while the planet gears are located at the outer edges of the system casing. Planet gears are held together by a carrier that is connected to the output shaft. Before choosing a particular gearbox for your application, make sure that you check the specific requirements and the environment to which the unit will be subjected.
A planetary gearbox has less stages of gears, and thus lower backlash compared to spur gearboxes. Backlash is lost motion that occurs when the teeth of the gears are out of perfect alignment. This problem is common in all gears, but is significantly less in planetary gearboxes. As such, planetary gearboxes are more efficient. They can also be customized according to the specific engine model and motor flange.
planetarygearbox

Planetary gearboxes with carrier

A planetary gearbox is a type of gearbox with three or more stages. They have a sun gear, which is usually the input gear, and planet gears, also called the outer gears. The carrier that connects the planet gears to the output shaft is called a ring gear. A planetary gearbox is generally designed to meet specific application and environmental requirements, but there are some factors to consider when choosing one.
The compact footprint of planetary gear sets results in high heat dissipation. This can be a problem in applications with sustained performance or high speeds. As a result, planetary gear sets often include lubricants, which present a cooling effect while also reducing noise and vibration. Some planetary gears even feature a carrier to make the installation process easier. Here are some things to keep in mind when choosing a planetary gear set.
Planetary gearboxes with carrier have several advantages over other types of gearboxes. Unlike conventional gearboxes, planetary gears have a common central shaft, and the tangential forces between the gears cancel out at the center of the ring gear. Because of this, planetary gearboxes are commonly used in input/output applications, and their compact size allows for a wide range of gear reductions. These gears can also produce higher torque density.

Planetary gearboxes with traction

Planetary gears are similar to the planetary system, in that each pinion rotates around a sun gear. The output of the planetary gear unit is lower than the drive rotation speed, but the torque is higher. As the number of planet gear wheels increases, so does the torque. Planetary gear systems contain three to four planet gears, and each is in constant mesh with the others. Power applied to any one member rotates the entire assembly.
Typical applications for planetary gear sets include high-precision motion control. In these applications, high torque, torsional stiffness, and low backlash are required. Planetary gear sets are also ideal for motors with higher speeds. A number of factors contribute to the reliability of these devices. The low backlash and large torque capacity of a planetary gear motor allow them to be used in a wide range of applications.

Planetary gearboxes with electric motors

If you’re in the market for a new gearbox, you may have already heard about planetary gearboxes. The planetary gearbox is a high-efficiency, low-noise gearbox. CZPT manufactures high-torque planetary gearboxes with low backlash. They also make economy planetary gearboxes for lower loads. However, with so many different types available, choosing the right one for your needs can be challenging.
These planetary gearboxes are a compact alternative to conventional pinion-and-gear reducers. They offer high-speed reduction and high torque transfer, and are often used for space-constrained applications. But before you can understand how they work, you’ll need to understand a little about their construction. There are a few things to look for that you may not have noticed before.
The most common type of planetary gearbox is a PM81/LN. It features a set of DC brush motors with diameter 77mm, a stator, and two or more outer gears. Each of these gears is connected to an output shaft through a carrier. They can also be used with brakes, encoders, or a clutch. A planetary gearbox is one of the most reliable gearbox types on the market.

Planetary gearboxes with hydraulic motors

A planetary gearbox is a combination of two gears, the sun and the planets. The sun gear rotates at high speed, while the planets roll around and orbit around the ring gear. The output shaft has the same direction of rotation as the input shaft. The benefits of a planetary gearbox include high reduction ratios, efficiency, space-saving compactness, and higher overload capacity. These gears are also more stable and compact, and they do not suffer from self-locking properties.
Planetary gearboxes are a highly efficient way to power hydraulic lifts. They can be input via electric, hydraulic, or air motors. The drive arrangement can be mounted on a bare shaft, splined shaft, or a parallel keyed input shaft. Depending on the application, bespoke gearboxes can be manufactured with a variety of features and functions.
planetarygearbox

Planetary gearboxes with combustion engines

There are many different applications of planetary gear sets. The most common is the distribution of power between two wheels in a car’s drive axle. Four-wheel drives use two axle differentials, which are further augmented by a centre differential. Hybrid electric vehicles use summation gearboxes to distribute power from the combustion engine to the wheels and to an electric motor. Planetary gear sets also combine the two different types of motors to form one hybrid vehicle.
To understand how planetary gear sets work, it is important to understand the underlying mechanical principles. For example, Fig. 4.6 shows a stick diagram illustrating two planetary gear sets connected by a lever. The two levers are the same length, so the system is analogous to a single lever. When calculating the torque, it is essential to consider the lever diagram. Similarly, if two gear sets are connected by vertical links, the horizontal links must be horizontal.

China Good quality Speed Reducer Et 3150, Ec 3150, EQ 4150 Series Gearbox for Construction Machinery, Tractor, Hydraulic System   planetary gearbox eleconChina Good quality Speed Reducer Et 3150, Ec 3150, EQ 4150 Series Gearbox for Construction Machinery, Tractor, Hydraulic System   planetary gearbox elecon
editor by Dream 2024-05-16

China wholesaler High Speed Gear Reducer Nmrv110 Worm Gearbox Reducer with Ms90s-4 Electric Motor

Product Description

Product Description

Model No.: NMRV/NRV571, 030, 040, 050, 063, 075, 090, 110, 130
Reduction gear, worm gear, gear reducer
Reduction gear

Features:
1) High quality aluminum alloy die cast gearbox
2) High accuracy worm gear and worm shaft
3) Less noise and lower temperature increase
4) Easy mounting and linking, high efficiency
5) Power: 0.06 – 15kW
6) Output torque: 2.7 – 1, 760Nm
7) Transmission rate: 5 – 100
Inner packing: Carton Outer packing: Wooden case
Reduction gear, worm gear, gear reducer

  model   PAM IEC   N   M P   7.5D   10D   15D   20D   25D   30D   40D   50D 60D    80D
  NMRV030   63B5   95   115   140   11   11   11   11   11   11   11   /   /   /
  NMRV030   63B14   60   75   90   11   11   11   11   11   11   11   /   /   /
  NMRV030   56B5   80   100   120   9   9   9   9   9   9   9   9   9   9
  NMRV030   56B14   50   65   80   9   9   9   9   9   9   9   9   9   9
  NMRV040   71B5   110   130   160   14   14   14   14   14   14   14   /   /   /
  NMRV040 71B14    70   85   105   14   14   14   14   14   14   14   /   /   /
  NMRV040   63B5   95   115   140   11   11   11   11   11   11   11   11 11    11
  NMRV040   63B14   60   75   90   11   11   11   11   11   11   11 11    11   11
  NRMV050   90B5   130   165   200   19   19   19   19   19   /   /   /   /   /
  NRMV050   80B14   80   100   120   19   19   19   19   19   /   /   /   /   /
  NRMV050   71B5   110   130   160   14   14   14   14 14    14     14   14   14   14
  NRMV050   71B14   70   85   105   14   14   14   14   14   14   14   14   14   14
  NMRV063   90B5   130   165   200   24   24   24   24   24   24   /   /   /   /
    NMRV063   90B14   95   115   140   24   24   24   24   24   24   /   /   /   /
    NMRV063   80B5   130   165   200   19   19   19   19   19   19   19   19   /   /
    NMRV063   80B14   80   100   120   19   19   19   19   19   19   19   19   /   /
  NRMV075   100/112B5   180   215   250   28   28   28   /   /   /   /   /   /   /
  NRMV075   100/112B14   110   130   160   28   28   28   /   /   /   /   /   /   /
  NRMV075   90B5   130   165   200   24   24   24   24   24   24   24   /   /   /
  NRMV075   90B14   95   115   140   24   24   24   24   24   24   24   /   /   /
  NMRV090   100/112B5   180   215   250   /   /   /   /   24   24   24   24   24   24
    NMRV090   100/112B14   110   130   160   /   /   /   /   24   24   24   24   24   24
    NMRV090   90B5   130   165   200   /   /   /   /   /   /   /   19   19   19
    NMRV090   90B14   95   115   140   /   /   /   /   /   /   /   19   19   19

Ms series aluminum housing three-phase asynchronous motors, with latest design in entirety, are made of selected quality materials and conform to the IEC standard.

MS series motor have good performance, safety and reliable operation, nice appearance, and can be maintained very conveniently, while with low noises, little vibration and at the same time light weight and simple construction. These series motors can be used for general drive.
OPERATING CONDITIONS
Ambient temperature: -15° C<0<40° C
Altitude: Not exceed 1000m.
Rated voltage: 380V, 220V~760V is available.
Rated frequency: 50Hz/60Hz
Duty/Rating: S1(Continuous)
Insulation class: F
Protection class: IP54
Cooling method: IC0141

Model Rated power Current Power factor Efficiency speed Locked Rotor
 torque
Locked Rot or Current Breakdown Torque
Type (KW) (A) (cosΦ) (η%) (r/min) Tst
TN
Ist
TN
Tmax
TN
synchronous speed 3000r/min(380V 50HZ)
MS561-2 0.09 0.29 0.77 62 2750 2.2 5.2 2.1
MS562-2 0.12 0.37 0.78 64 2750 2.2 5.2 2.1
MS631-2 0.18 0.53 0.8 65 2780 2.3 5.5 2.3
MS632-2 0.25 0.69 0.81 68 2780 2.3 5.5 2.3
MS711-2 0.37 1.01 0.81 69 2800 2.2 6.1 2.3
MS712-2 0.55 1.38 0.82 74 2800 2.3 6.1 2.3
MS801-2 0.75 1.77 0.83 75 2825 2.3 6.1 2.2
MS802-2 1.1 2.46 0.84 76.2 2825 2.3 6.9 2.2
MS90S-2 1.5 3.46 0.84 78.5 2840 2.3 7.0  2.2
MS90L-2 2.2 4.85 0.85 81 2840 2.3 7.0  2.2
MS100L-2 3 6.34 0.87 82.6 2880 2.3 7.5 2.2
MS112M-2 4 8.20  0.88 84.2 2890 2.3 7.5 2.2
MS132S1-2 5.5 11.1 0.88 85.7 2900 2.3 7.5 2.2
MS132S2-2 7.5 14.9 0.88 87 2900 2.3 7.5 2.2
MS160M1-2 11 21.2 0.89 88.4 2947 2.3 7.5 2.2
MS160M2-2 15 28.6 0.89 89.4 2947 2.3 7.5 2.2
MS160L-2 18.5 34.7 0.90  90 2947 2.3 7.5 2.2
synchronous speed 1500 r/min(380V 50HZ)
MS561-4 0.06 0.23 0.70  56 1300 2.1 4.0  2.0 
MS562-4 0.09 0.33 0.72 58 1300 2.1 4.0  2.0 
MS631-4 0.12 0.44 0.72 57 1330 2.2 4.4 2.1
MS632-4 0.18 0.62 0.73 60 1330 2.2 4.4 2.1
MS711-4 0.25 0.79 0.74 65 1360 2.2 5.2 2.1
MS712-4 0.37 1.12 0.75 67 1360 2.2 5.2 2.1
MS801-4 0.55 1.52 0.75 71 1380 2.3 5.2 2.4
MS802-4 0.75 1.95 0.76 73 1380 2.3 6.0  2.3
MS90S-4 1.1 2.85 0.77 76.2 1390 2.3 6.0  2.3
MS90L-4 1.5 3.72 0.78 78.2 1390 2.3 6.0  2.3
MS100L1-4 2.2 5.09 0.81 81 1410 2.3 7.0  2.3
MS100L2-4 3 6.78 0.82 82.6 1410 2.3 7.0  2.3
MS112M-4 4 8.8 0.82 84.6 1435 2.3 7.0  2.3
MS132S1-4 5.5 11.7 0.83 85.7 1445 2.3 7.0  2.3
MS132S2-4 7.5 15.6 0.84 87 1445 2.3 7.0  2.3
MS160M-4 11 22.5 0.84 88.4 1460 2.2 7.0  2.3
MS160L-4 15 30.0  0.85 89.4 1460 2.2 7.5 2.3
                 
Model Rated power Current Power factor Efficiency speed Locked Rotor
 torque
Locked Rot or Current Breakdown Torque
Type (KW) (A) (cosΦ) (η%) (r/min) Tst
TN
Ist
TN
Tmax
TN
synchronous speed 1000 r/min(380V 50HZ)
MS711-6 0.18 0.74 0.66 56 900 2.0  4.0  1.9
MS712-6 0.25 0.95 0.68 59 900 2.0  4.0  1.9
MS801-6 0.37 1.23 0.70  62 900 2.0  4.7 1.8
MS802-6 0.55 1.70  0.72 65 900 2.1 4.7 1.8
MS90S-6 0.75 2.29 0.72 69 900 2.1 5.3 2.0 
MS90L-6 1.1 3.18 0.73 72 910 2.1 5.5 2.0 
MS100L-6 1.5 4.0  0.76 76 910 2.1 5.5 2.0 
MS112M-6 2.2 5.6 0.76 79 940 2.1 6.5 2.0 
MS132S-6 3 7.40  0.76 81 940 2.1 6.5 2.1
MS132M1-6 4 9.5 0.76 82 960 2.1 6.5 2.1
MS132M2-6 5.5 12.6 0.77 84 960 2.1 6.5 2.1
MS160M-6 7.5 17.2 0.77 86 960 2.0  6.5 2.1
MS160L-6 11 24.5 0.78 87.5 960 2.0  6.5 2.1
synchronous speed 750 r/min(380V 50HZ)
MS801-8 0.18 0.83 0.61 51 630 1.9 3.3 1.8
MS802-8 0.25 1.10  0.61 54 640 1.9 3.3 1.8
MS90S-8 0.37 1.49 0.61 62 660 1.9 4.0  1.8
MS90L-8 0.55 2.17 0.61 63 660 2.0  4.0  1.8
MS100L1-8 0.75 2.43 0.67 70 690 2.0  4.0  1.8
MS100L2-8 1.1 3.36 0.69 72 690 2.0  5.0  1.8
MS112M-8 1.5 4.40  0.70  74 680 2.0  5.0  1.8
MS132S-8 2.2 6.00  0.71 79 710 2.0  6.5 1.8
MS132M-8 3 7.80  0.73 80 710 2.0  6.5 1.8
MS160M1-8 4 10.3 0.73 81 720 2.0  6.6  2.0 
MS160M2-8 5.5 13.6 0.74 83 720 2.0  6.6  2.0 
MS160L-8 7.5 17.8 0.75 85.5 720 2.0  6.6 2.0 

Detailed Photos

Our Advantages

We have more than 30years on all kinds of ac motors and gearmotor ,worm reducers producing ,nice price 
What we do:
1.Stamping of lamination
2.Rotor die-casting
3.Winding and inserting – both manual and semi-automatically
4.Vacuum varnishing
5.Machining shaft, housing, end shields, etc…
6.Rotor balancing
7.Painting – both wet paint and powder coating
8.assembly
9.Packing
10.Inspecting spare parts every processing
11.100% test after each process and final test before packing.,

FAQ

Q: Do you offer OEM service?
A: Yes
Q: What is your payment term?
A: 30% T/T in advance, 70% balance when receiving B/L copy. Or irrevocable L/C.
Q: What is your lead time?
A: About 30 days after receiving deposit or original L/C.
Q: What certifiicates do you have?
A: We have CE, ISO. And we can apply for specific certificate for different country such as SONCAP for Nigeria, COI for Iran, SASO for Saudi Arabia, etc.

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Industrial, Household Appliances, Power Tools
Operating Speed: Constant Speed
Number of Stator: Three-Phase
Species: Y, Y2 Series Three-Phase
Rotor Structure: Squirrel-Cage
Casing Protection: Protection Type
Samples:
US$ 135/Piece
1 Piece(Min.Order)

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Customization:
Available

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winch drive

How does the choice of winch drives affect the overall performance and reliability of lifting operations?

The choice of winch drives has a significant impact on the overall performance and reliability of lifting operations. Here’s a detailed explanation of how the choice of winch drives affects performance and reliability:

  • Lifting Capacity:

The choice of winch drives directly affects the lifting capacity of the system. Different winch drives have varying load capacities, and selecting an appropriate winch drive that matches the intended lifting requirements is crucial. Choosing a winch drive with insufficient lifting capacity can result in overloading, which can lead to equipment failure, safety hazards, and potential damage to the load or surrounding structures. On the other hand, selecting a winch drive with a higher lifting capacity than necessary can lead to unnecessary costs and inefficient operation. Therefore, selecting the right winch drive with the appropriate lifting capacity is essential for optimal performance and reliability.

  • Speed and Control:

The choice of winch drives also affects the speed and control of lifting operations. Different winch drives offer varying speed ranges and control options. High-quality winch drives provide smooth and precise speed control, allowing for accurate positioning and delicate handling of loads. The choice of winch drives with suitable speed and control capabilities ensures efficient and controlled lifting operations, reducing the risk of accidents, damage to the load, or strain on the lifting equipment. Additionally, winch drives with advanced control features, such as programmable logic controllers (PLCs) or electronic control systems, enhance operational reliability and performance by enabling synchronized movements and automation.

  • Durability and Reliability:

The choice of winch drives significantly impacts the durability and reliability of lifting operations. High-quality winch drives constructed with robust materials and designed for heavy-duty applications offer enhanced durability and reliability. They can withstand the demanding conditions and stress associated with lifting operations, minimizing the risk of breakdowns, malfunctions, or premature wear. Choosing winch drives from reputable manufacturers known for their quality and reliability ensures long-term performance and reduces the need for frequent maintenance or replacement, enhancing the overall reliability of the lifting operations.

  • Safety Features:

Winch drives come with various safety features that contribute to the overall performance and reliability of lifting operations. These safety features include overload protection systems, emergency stop controls, limit switches, and fail-safe mechanisms. The choice of winch drives with comprehensive safety features enhances the safety of lifting operations by preventing overloading, safeguarding against equipment failures, and providing emergency shutdown options in critical situations. Properly selecting winch drives with appropriate safety features ensures compliance with safety regulations, reduces the risk of accidents, and enhances the reliability of lifting operations.

  • Compatibility and Integration:

Choosing winch drives that are compatible with the overall lifting system and easily integrable with other components is crucial for optimal performance and reliability. Compatibility issues can arise if the selected winch drive does not match the mechanical requirements, power supply, or control interfaces of the lifting system. Incompatibility can lead to operational inefficiencies, increased maintenance needs, or even system failures. Therefore, careful consideration of the compatibility and integration aspects when choosing winch drives ensures seamless integration, smooth operation, and enhanced reliability of lifting operations.

In summary, the choice of winch drives significantly impacts the overall performance and reliability of lifting operations. Factors such as lifting capacity, speed and control capabilities, durability and reliability, safety features, and compatibility with the overall system should be carefully considered when selecting winch drives. By choosing the right winch drives that meet the specific requirements of the lifting operations, operators can achieve optimal performance, ensure safe and efficient lifting, and enhance the overall reliability of the operations.

winch drive

How do winch drives contribute to precise and controlled movement in lifting operations?

Winch drives play a crucial role in achieving precise and controlled movement in lifting operations. They provide the necessary power and control to lift and lower loads in a controlled manner. Here’s a detailed explanation of how winch drives contribute to precise and controlled movement in lifting operations:

  • Pulling Power:

Winch drives are designed to generate substantial pulling power, allowing them to lift heavy loads. The power output of the winch drive is determined by factors such as the type of drive (electric, hydraulic, or pneumatic), motor power, and gear ratios. The high pulling power of winch drives enables them to handle loads with precision and control, even in challenging lifting scenarios.

  • Variable Speed Control:

Many winch drives offer variable speed control, allowing operators to adjust the lifting or lowering speed according to the specific requirements of the operation. This feature enables precise movement control, particularly when dealing with delicate or sensitive loads. Operators can slow down the speed for fine positioning or speed up the operation for more efficient lifting, depending on the situation. Variable speed control enhances the precision and control of the lifting process, minimizing the risk of load damage or accidents.

  • Braking Systems:

Winch drives are typically equipped with braking systems to ensure load holding and prevent unintended movement. The braking systems are designed to engage when the winch motor is not actively pulling or lowering the load, effectively immobilizing the load at the desired position. This feature allows for precise control over the load’s movement and prevents it from unintentionally drifting or descending. The braking systems contribute to the overall safety and stability of the lifting operation.

  • Control Mechanisms:

The control mechanisms of winch drives play a significant role in achieving precise and controlled movement. Winch drives can be operated manually, through remote control systems, or integrated control interfaces. Remote control systems, for example, enable operators to control the winch drive from a safe distance, providing better visibility and control over the lifting operation. Integrated control interfaces often offer additional features such as load monitoring, digital displays, and programmable settings, allowing for more precise and controlled movement of the load.

  • Load Monitoring and Safety Features:

Winch drives may incorporate load monitoring systems and safety features to further enhance precise and controlled movement. Load monitoring systems provide real-time feedback on the load’s weight, allowing operators to adjust the lifting parameters accordingly. Safety features such as overload protection and limit switches prevent the winch drive from operating beyond its capacity or reaching unsafe positions, ensuring controlled movement and preventing damage or accidents.

By combining their pulling power, variable speed control, braking systems, control mechanisms, and safety features, winch drives enable precise and controlled movement in lifting operations. They provide the necessary power, control, and safety measures to handle heavy loads with accuracy, minimizing the risk of load damage, accidents, or injuries. The precise and controlled movement achieved through winch drives enhances operational efficiency, load positioning, and overall safety in lifting operations.

winch drive

What are the advantages of using a winch drive in comparison to other lifting mechanisms?

Using a winch drive as a lifting mechanism offers several advantages over other lifting mechanisms. The unique characteristics and capabilities of winch drives make them a preferred choice in various applications. Here’s a detailed explanation of the advantages of using a winch drive in comparison to other lifting mechanisms:

  • Versatility:

Winch drives offer versatility in terms of their application and adaptability to different industries. They can be utilized in a wide range of scenarios, including off-road recovery, marine operations, construction sites, and recreational activities. Winch drives can handle various load sizes and weights, making them suitable for both light and heavy lifting tasks. The ability to use winch drives in diverse environments and industries makes them a flexible and versatile choice for lifting and pulling operations.

  • Control and Precision:

Winch drives provide precise control over the lifting and pulling operation. The gearing system allows operators to adjust the speed and direction of the winch drive, enabling accurate positioning and controlled movement of the load. This level of control is particularly beneficial in applications where precise load placement or delicate handling is required. Winch drives allow for fine adjustments and smooth operation, resulting in improved precision and reduced risk of damage to the load or surrounding structures.

  • Pulling Power:

Winch drives are designed to generate significant pulling power, allowing them to handle heavy loads effectively. The power source, whether it’s an electric motor or hydraulic system, provides the necessary energy to generate substantial pulling force. This makes winch drives suitable for tasks that involve moving or lifting heavy objects, such as in construction, industrial settings, or vehicle recovery. The pulling power of winch drives gives them an advantage over other lifting mechanisms that may have limited capacity or require additional equipment for handling heavier loads.

  • Compactness and Portability:

Winch drives are generally compact and portable, which enhances their usability in various settings. They can be easily mounted on vehicles, equipment, or structures, offering mobility and convenience. Compact winch drives are particularly useful in off-road vehicles, where space may be limited. The portability of winch drives allows for flexibility in different applications and enables their use in remote or challenging locations where other lifting mechanisms may not be easily accessible.

  • Safety:

Winch drives are designed with safety features to ensure secure and controlled lifting operations. These features may include overload protection, emergency stop mechanisms, and limit switches. The braking system in winch drives provides reliable load holding, preventing unintentional load release. Additionally, winch drives can be equipped with remote control systems, allowing operators to maintain a safe distance during operation. The safety features and control mechanisms of winch drives contribute to enhanced safety and minimize the risk of accidents or injuries.

These advantages make winch drives a preferred choice over other lifting mechanisms in many applications. The versatility, control, pulling power, compactness, portability, and safety features of winch drives provide distinct benefits that cater to the specific requirements of lifting and pulling operations in various industries and scenarios.

China wholesaler High Speed Gear Reducer Nmrv110 Worm Gearbox Reducer with Ms90s-4 Electric Motor  China wholesaler High Speed Gear Reducer Nmrv110 Worm Gearbox Reducer with Ms90s-4 Electric Motor
editor by Dream 2024-05-15