Tag Archives: high speed gearbox

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

China high quality Wpx Wpa 80 155 Wp0 Wp Gearbox Series Variable Ratio Speed Reducer Worm Drive Gearbox comer planetary gearbox

Product Description

Products Description

Type

WPA gears,gearboxes,transmission

Size

40-250

Ratio

10,15,20,25,30,40,50,60

Mounting Position

Foot mounted, flange mounted

Output Form

CZPT shaft, hollow shaft

Material of Housing

Casting Iron

Material of Shaft

Chromium steel

Bearing

REN BEN.CU

Technical Parameters

Packing and shipping

Our certificate

Customer visit

Company Profile

HangZhou HangZhoun Machinery Co., Ltd. is a professional machinery manufacturing enterprise, with 20 years of experience in the field of machinery manufacturing and the ability of independent research and development. Our products rely on advanced technology, reliable quality, excellent prices to win the trust of customers. The products are sold to more than 50 countries all over the world, and have a good cooperative relationship with customers. Our products enjoy a one-year warranty service for major parts, and our 24-hour technical team provides customer service.

/* 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
Function: Speed Changing, Speed Reduction, Speed Increase
Layout: Cycloidal
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Step: Three-Step
Customization:
Available

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Customized Request

planetarygearbox

Planetary Gearbox Advantages and Disadvantages

A planetary gearbox is a type of mechanical drive with a single output shaft. They are suitable for both clockwise and counterclockwise rotations, have less inertia, and operate at higher speeds. Here are some advantages and disadvantages of this type of gearbox. Let us see what these advantages are and why you should use them in your applications. Listed below are some of the benefits of planetary gearboxes.

Suitable for counterclockwise and clockwise rotation

If you want to teach children about the clock hands, you can buy some resources for counterclockwise and asymmetrical rotation. These resources include worksheets for identifying degrees of rotation, writing rules for rotation, and visual processing. You can also use these resources to teach angles. For example, the translation of shapes activity pack helps children learn about the rotation of geometric shapes. Similarly, the visual perception activity sheet helps children understand how to process information visually.
Various studies have been done to understand the anatomical substrate of rotations. In a recent study, CZPT et al. compared the position of the transitional zone electrocardiographically and anatomically. The authors found that the transitional zone was normal in nine of 33 subjects, indicating that rotation is not a sign of disease. Similarly, a counterclockwise rotation may be caused by a genetic or environmental factor.
The core tip data should be designed to work in both clockwise and counterclockwise rotation. Counterclockwise rotation requires a different starting point than a clockwise rotation. In North America, star-delta starting is used. In both cases, the figure is rotated about its point. Counterclockwise rotation, on the other hand, is done in the opposite direction. In addition, it is possible to create counterclockwise rotation using the same gimbal.
Despite its name, both clockwise and counterclockwise rotation requires a certain amount of force to rotate. When rotating clockwise, the object faces upwards. Counterclockwise rotation, on the other hand, starts from the top position and heads to the right. If rotating in the opposite direction, the object turns counterclockwise, and vice versa. The clockwise movement, in contrast, is the reverse of counterclockwise rotation.

Has less inertia

The primary difference between a planetary gearbox and a normal pinion-and-gear reducer is the ratio. A planetary gearbox will produce less inertia, which is an important advantage because it will reduce torque and energy requirements. The ratio of the planetary gearbox to its fixed axis counterpart is a factor of three. A planetary gearbox has smaller gears than a conventional planetary, so its inertia is proportional to the number of planets.
Planetary gears are less inertia than spur gears, and they share the load across multiple gear teeth. This means that they will have low backlash, and this is essential for applications with high start-stop cycles and frequent rotational direction changes. Another benefit is the high stiffness. A planetary gearbox will have less backlash than a spur gearbox, which means that it will be more reliable.
A planetary gearbox can use either spur or helical gears. The former provides higher torque ratings while the latter has less noise and stiffness. Both types of gears are useful in motorsports, aerospace, truck transmissions, and power generation units. They require more assembly time than a conventional parallel shaft gear, but the PD series is the more efficient alternative. PD series planetary gears are suitable for many applications, including servo and robotics.
In contrast, a planetary gear set can have varying input speed. This can affect the frequency response of the gearset. A mathematical model of the two-stage planetary gears has non-stationary effects and correlates with experimental findings. Fig. 6.3 shows an addendum. The dedendum’s minimum value is approximately 1.25m. When the dedendum is at its smallest, the dedendum has less inertia.
planetarygearbox

Offers greater reliability

The Planetary Gearbox is a better option for driving a vehicle than a standard spur gearbox. A planetary gearbox is less expensive, and they have better backlash, higher load capacity, and greater shock loads. Unlike spur gearboxes, however, mechanical noise is virtually nonexistent. This makes them more reliable in high-shock situations, as well as in a wide range of applications.
The Economy Series has the same power density and torque capacity of the Precision Helical Series, but it lacks the precision of the latter. In contrast, Economy Series planetary gearboxes feature straight spur planetary gearing, and they are used in applications requiring high torque. Both types of gearboxes are compatible with NEMA servo motors. If torque density is important, a planetary gearbox is the best choice.
The Dispersion of External Load: The SSI model has been extensively used to model the reliability of planetary gear systems. This model takes the contact force and fatigue strength of the system as generalized stress and strength. It also provides a theoretical framework to evaluate the reliability of planetary gear systems. It also has many other advantages that make it the preferred choice for high-stress applications. The Planetary Gearbox offers greater reliability and efficiency than traditional rack and pinion gear systems.
Planetary gearing has greater reliability and compact design. Its compact design allows for wider applications with concerns about space and weight. Additionally, the increased torque and reduction makes planetary gearboxes an excellent choice for a wide variety of applications. There are three major types of planetary gearboxes, each with its own advantages. This article describes a few of them. Once you understand their workings, you will be able to choose the best planetary gearbox for your needs.

Has higher operating speeds

When you look at planetary gearboxes, you might be confused about which one to choose. The primary issue is the application of the gearbox. You must also decide on secondary factors like noise level, corrosion resistance, construction, price, and availability worldwide. Some constructors work faster than others and deliver the gearboxes on the same day. However, the latter ones often deliver the planetary gearbox out of stock.
Compared to conventional gearboxes, a planetary gearbox can run at higher speeds when the input speed fluctuates. However, these gears are not very efficient in high-speed applications because of their increased noise levels. This makes planetary gears unsuitable for applications involving a great deal of noise. That is why most planetary gears are used in small-scale applications. There are some exceptions, but in general, a planetary gearbox is better suited for applications with higher operating speeds.
The basic planetary gearbox is a compact alternative to normal pinion-and-gear reducers. They can be used in a wide variety of applications where space and weight are concerns. Its efficiency is also higher, delivering 97% of the power input. It comes in three different types based on the performance. A planetary gearbox can also be classified as a worm gear, a spur gear, or a sprocket.
A planetary gearhead has a high-precision design and can generate substantial torque for their size. It also reduces backlash to two arc-min. Additionally, it is lubricated for life, which means no maintenance is needed. It can fit into a small machine envelope and has a small footprint. Moreover, the helical crowned gearing provides fast positioning. A sealed gearbox prevents abrasive dust from getting into the planetary gearhead.
planetarygearbox

Has drawbacks

The design of a planetary gearbox is compact and enables high torque and load capability in a small space. This gear arrangement also reduces the possibility of wear and tear. Planet gears are arranged in a planetary fashion, allowing gears to shift under load and a uniform distribution of torque. However, some disadvantages of planetary gears must be considered before investing in this gearbox.
While the planetary gearbox is a high precision motion-control device, its design and maintenance requirements are a concern. The bearing load is high, requiring frequent lubrication. Also, they are inaccessible. Despite these drawbacks, planetary gearboxes are suitable for a variety of tasks. They also have low backlash and high torsional stiffness, making them excellent choices for many applications.
As a result, the speed of a planetary gearbox varies with load and speed. At lower ratios, the sun gear becomes too large in relation to the planet gears. As the ratio increases, the sun gear will become too low, reducing torque. The planetary gears also reduce their torque in high-speed environments. Consequently, the ratio is a crucial consideration for planetary gearbox condition monitoring.
Excess drag may result from out-of-tolerance components or excessive lubrication. Drag should be measured both in directions and be within acceptable ranges. Grease and oil lubrication are two common planetary gearbox lubricants, but the choice is largely dependent on your application. While grease lubricates planetary gears well, oil needs maintenance and re-lubrication every few thousand hours.

China high quality Wpx Wpa 80 155 Wp0 Wp Gearbox Series Variable Ratio Speed Reducer Worm Drive Gearbox   comer planetary gearboxChina high quality Wpx Wpa 80 155 Wp0 Wp Gearbox Series Variable Ratio Speed Reducer Worm Drive Gearbox   comer planetary gearbox
editor by Dream 2024-05-09

China high quality Speed Reducer FL635. U Ec 3045, FL620.10 Et 3045, FL620.10 EQ 4045 Series Gearbox for Construction Machinery, Port Equipment Spare Parts planetary gearbox clutch

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Product Description

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LBREVINI EC 4045 – PDA 4045,i=498.3 3KW
LBREVINI EC 4045 – PDA 4045,i=570.0 3KW
LBREVINI EC 4045 – PDA 4045,i=625.0 3KW
LBREVINI EC 4045 – PDA 4045,i=712.7 3KW
LBREVINI EC 4045 – PDA 4045,i=799.3 3KW
LBREVINI EC 4045 – PDA 4045,i=929.1 3KW
LBREVINI EC 4045 – PDA 4045,i=988.1 3KW
LBREVINI EC 4045 – PDA 4045,i=1078 3KW
LBREVINI EC 4045 – PDA 4045,i=1194 3KW
LBREVINI EC 4045 – PDA 4045,i=1409 3KW
LBREVINI EC 4045 – PDA 4045,i=1593 3KW
LBREVINI EC 4045 – PDA 4045,i=1806 3KW
LBREVINI EC 4045 – PDA 4045,i=1925 3KW
LBREVINI EC 4045 – PDA 4045,i=2208 3KW
LBREVINI EC 4045 – PDA 4045,i=2563 3KW
LBREVINI EC 4045 – PDA 4045,i=2668 3KW
LBREVINI EC 4045 – PDA 4045,i=3097 3KW
LBREVINI FL250 EM 1045  
LBREVINI FL250 ED 2045  
LBREVINI FL250 EC 2045  
LBREVINI FL250 EC 2045*  
LBREVINI FL250 EC 3045  
LBREVINI FL250 EC 3045*  
LBREVINI FL350 EM 1045  
LBREVINI FL350 ED 2045  
LBREVINI FL350 EC 2045  
LBREVINI FL350 EC 2045*  
LBREVINI FL350 EC 3045  
LBREVINI FL350 EC 3045*  
LBREVINI FL450 EM 1045  
LBREVINI FL450 ED 2045  
LBREVINI FL450 EC 2045  
LBREVINI FL450 EC 2045*  
LBREVINI FL450 EC 3045  
LBREVINI FL450 EC 3045*  
LBREVINI FL750 EM 1045  
LBREVINI FL750 ED 2045  
LBREVINI FL620.U EM 1045  
LBREVINI FL620.U ED 2045  
LBREVINI FL620.U ET 3045  
LBREVINI FL620.U EQ 4045  
LBREVINI FL620.U EC 2045  
LBREVINI FL620.U EC 2045*  
LBREVINI FL620.U EC 3045  
LBREVINI FL620.U EC 3045*  
LBREVINI FL635.U EM 1045  
LBREVINI FL635.U ED 2045  
LBREVINI FL635.U ET 3045  
LBREVINI FL635.U EQ 4045  
LBREVINI FL635.U EC 2045  
LBREVINI FL635.U EC 2045*  
LBREVINI FL635.U EC 3045  
LBREVINI FL635.U EC 3045*  
LBREVINI FL620.10 ET 3045  
LBREVINI FL620.10 EQ 4045  
LBREVINI FL635.10 ET 3045  
LBREVINI FL635.10 EQ 4045  
LBREVINI EM 1045 MR-MR1-FS  
LBREVINI EM 1045 FE  
LBREVINI EM 1045 FP  
LBREVINI ED 2045 MR-MR1-FS  
LBREVINI ED 2045 FE  
LBREVINI ED 2045 FP  
LBREVINI ET 3045 MR-MR1-FS  
LBREVINI ET 3045 FE  
LBREVINI ET 3045 FP  
LBREVINI EQ 4045 MR-MR1-FS  
LBREVINI EQ 4045 FE  
LBREVINI EQ 4045 FP  
LBREVINI PD 1045 PD  
LBREVINI PD 2045 PD  
LBREVINI PD 3045 PD  
LBREVINI PD 4045 PD  
LBREVINI EC 2045 MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 2045* MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 3045 MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 3045* MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 4045 MR-MR1-FE-FS-FP-PDA  
LBREVINI EM1046,i=3.50 20KW
LBREVINI EM1046,i=4.13 20KW
LBREVINI EM1046,i=5.17 20KW
LBREVINI EM1046,i=6.00 20KW
LBREVINI EM1046,i=7.25 20KW
LBREVINI ED 2046,i=10.78 15KW
LBREVINI ED 2046,i=12.25 15KW
LBREVINI ED 2046,i=14.46 15KW
LBREVINI ED 2046,i=17.06 15KW
LBREVINI ED 2046,i=18.10 15KW
LBREVINI ED 2046,i=21.00 15KW
LBREVINI ED 2046,i=25.38 15KW
LBREVINI ED 2046,i=29.94 15KW
LBREVINI ED 2046,i=31.02 15KW
LBREVINI ED 2046,i=36.00 15KW
LBREVINI ED 2046,i=43.50 15KW
LBREVINI ED 2046,i=52.56 15KW
LBREVINI ET 3046,i=53.78 10KW
LBREVINI ET 3046,i=63.46 10KW
LBREVINI ET 3046,i=73.50 10KW
LBREVINI ET 3046,i=79.44 10KW
LBREVINI ET 3046,i=92.19 10KW
LBREVINI ET 3046,i=100.3 10KW
LBREVINI ET 3046,i=108.6 10KW
LBREVINI ET 3046,i=125.6 10KW
LBREVINI ET 3046,i=145.7 10KW
LBREVINI ET 3046,i=152.3 10KW
LBREVINI ET 3046,i=176.1 10KW
LBREVINI ET 3046,i=207.8 10KW
LBREVINI ET 3046,i=224.2 10KW
LBREVINI ET 3046,i=260.2 10KW
LBREVINI ET 3046,i=280.7 10KW
LBREVINI ET 3046,i=314.4 10KW
LBREVINI ET 3046,i=364.8 10KW
LBREVINI EQ 4046,i=404.7 6KW
LBREVINI EQ 4046,i=441.0 6KW
LBREVINI EQ 4046,i=510.1 6KW
LBREVINI EQ 4046,i=551.3 6KW
LBREVINI EQ 4046,i=639.8 6KW
LBREVINI EQ 4046,i=696.2 6KW
LBREVINI EQ 4046,i=773.1 6KW
LBREVINI EQ 4046,i=913.5 6KW
LBREVINI EQ 4046,i=1011 6KW
LBREVINI EQ 4046,i=1140 6KW
LBREVINI EQ 4046,i=1222 6KW
LBREVINI EQ 4046,i=1442 6KW
LBREVINI EQ 4046,i=1599 6KW
LBREVINI EQ 4046,i=1849 6KW
LBREVINI EQ 4046,i=1995 6KW
LBREVINI EQ 4046,i=2315 6KW
LBREVINI EQ 4046,i=2623 6KW
LBREVINI EQ 4046,i=2798 6KW
LBREVINI EQ 4046,i=3301 6KW
LBREVINI EM1046,i=3.50 20KW
LBREVINI EM1046,i=4.13 20KW
LBREVINI EM1046,i=5.17 20KW
LBREVINI EM1046,i=6.00 20KW
LBREVINI EM1046,i=7.25 20KW
LBREVINI ED 2046,i=10.78 15KW
LBREVINI ED 2046,i=12.25 15KW
LBREVINI ED 2046,i=14.46 15KW
LBREVINI ED 2046,i=17.06 15KW
LBREVINI ED 2046,i=18.10 15KW
LBREVINI ED 2046,i=21.00 15KW
LBREVINI ED 2046,i=25.38 15KW
LBREVINI ED 2046,i=29.94 15KW
LBREVINI ED 2046,i=31.02 15KW
LBREVINI ED 2046,i=36.00 15KW
LBREVINI ED 2046,i=43.50 15KW
LBREVINI ED 2046,i=52.56 15KW
LBREVINI ET 3046,i=53.78 10KW
LBREVINI ET 3046,i=63.46 10KW
LBREVINI ET 3046,i=73.50 10KW
LBREVINI ET 3046,i=79.44 10KW
LBREVINI ET 3046,i=92.19 10KW
LBREVINI ET 3046,i=100.3 10KW
LBREVINI ET 3046,i=108.6 10KW
LBREVINI ET 3046,i=125.6 10KW
LBREVINI ET 3046,i=145.7 10KW
LBREVINI ET 3046,i=152.3 10KW
LBREVINI ET 3046,i=176.1 10KW
LBREVINI ET 3046,i=207.8 10KW
LBREVINI ET 3046,i=224.2 10KW
LBREVINI ET 3046,i=260.2 10KW
LBREVINI ET 3046,i=280.7 10KW
LBREVINI ET 3046,i=314.4 10KW
LBREVINI ET 3046,i=364.8 10KW
LBREVINI EQ 4046,i=404.7 6KW
LBREVINI EQ 4046,i=441.0 6KW
LBREVINI EQ 4046,i=510.1 6KW
LBREVINI EQ 4046,i=551.3 6KW
LBREVINI EQ 4046,i=639.8 6KW
LBREVINI EQ 4046,i=696.2 6KW
LBREVINI EQ 4046,i=773.1 6KW
LBREVINI EQ 4046,i=913.5 6KW
LBREVINI EQ 4046,i=1011 6KW
LBREVINI EQ 4046,i=1140 6KW
LBREVINI EQ 4046,i=1222 6KW
LBREVINI EQ 4046,i=1442 6KW
LBREVINI EQ 4046,i=1599 6KW
LBREVINI EQ 4046,i=1849 6KW
LBREVINI EQ 4046,i=1995 6KW
LBREVINI EQ 4046,i=2315 6KW
LBREVINI EQ 4046,i=2623 6KW
LBREVINI EQ 4046,i=2798 6KW
LBREVINI EQ 4046,i=3301 6KW
LBREVINI EC 2046- PDA 2046,i=10.50 12KW
LBREVINI EC 2046- PDA 2046,i=12.39 12KW
LBREVINI EC 2046- PDA 2046,i=16.17 12KW
LBREVINI EC 2046- PDA 2046,i=18.00 12KW
LBREVINI EC 2046- PDA 2046,i=19.08 12KW
LBREVINI EC 2046- PDA 2046,i=21.75 12KW
LBREVINI EC 2046- PDA 2046,i=23.89 12KW
LBREVINI EC 2046- PDA 2046,i=27.72 12KW
LBREVINI EC 2046- PDA 2046,i=33.50 12KW
LBREVINI EC 3046- PDA 3046,i=36.75 7KW
LBREVINI EC 3046- PDA 3046,i=43.37 7KW
LBREVINI EC 3046- PDA 3046,i=49.80 7KW
LBREVINI EC 3046- PDA 3046,i=56.60 7KW
LBREVINI EC 3046- PDA 3046,i=63.00 7KW
LBREVINI EC 3046- PDA 3046,i=73.57 7KW
LBREVINI EC 3046- PDA 3046,i=83.60 7KW
LBREVINI EC 3046- PDA 3046,i=89.83 7KW
LBREVINI EC 3046- PDA 3046,i=97.02 7KW
LBREVINI EC 3046- PDA 3046,i=114.5 7KW
LBREVINI EC 3046- PDA 3046,i=123.5 7KW
LBREVINI EC 3046- PDA 3046,i=138.3 7KW
LBREVINI EC 3046- PDA 3046,i=166.3 7KW
LBREVINI EC 3046- PDA 3046,i=173.2 7KW
LBREVINI EC 3046- PDA 3046,i=201.0 7KW
LBREVINI EC 3046- PDA 3046,i=242.8 7KW
LBREVINI EC 4046 – PDA 4046,i=276.6 3KW
LBREVINI EC 4046 – PDA 4046,i=310.3 3KW
LBREVINI EC 4046 – PDA 4046,i=347.1 3KW
LBREVINI EC 4046 – PDA 4046,i=414.7 3KW
LBREVINI EC 4046 – PDA 4046,i=450.8 3KW
LBREVINI EC 4046 – PDA 4046,i=498.3. 3KW
LBREVINI EC 4046 – PDA 4046,i=570.0 3KW
LBREVINI EC 4046 – PDA 4046,i=625.0 3KW
LBREVINI EC 4046 – PDA 4046,i=712.7 3KW
LBREVINI EC 4046 – PDA 4046,i=799.3 3KW
LBREVINI EC 4046 – PDA 4046,i=929.1 3KW
LBREVINI EC 4046 – PDA 4046,i=988.1 3KW
LBREVINI EC 4046 – PDA 4046,i=1078 3KW
LBREVINI EC 4046 – PDA 4046,i=1194 3KW
LBREVINI EC 4046 – PDA 4046,i=1409 3KW
LBREVINI EC 4046 – PDA 4046,i=1593 3KW
LBREVINI EC 4046 – PDA 4046,i=1806 3KW
LBREVINI EC 4046 – PDA 4046,i=1925 3KW
LBREVINI EC 4046 – PDA 4046,i=2208 3KW
LBREVINI EC 4046 – PDA 4046,i=2563 3KW
LBREVINI EC 4046 – PDA 4046,i=2668 3KW
LBREVINI EC 4046 – PDA 4046,i=3097 3KW
LBREVINI EC 2046- PDA 2046,i=10.50 12KW
LBREVINI EC 2046- PDA 2046,i=12.39 12KW
LBREVINI EC 2046- PDA 2046,i=16.17 12KW
LBREVINI EC 2046- PDA 2046,i=18.00 12KW
LBREVINI EC 2046- PDA 2046,i=19.08 12KW
LBREVINI EC 2046- PDA 2046,i=21.75 12KW
LBREVINI EC 2046- PDA 2046,i=23.89 12KW
LBREVINI EC 2046- PDA 2046,i=27.72 12KW
LBREVINI EC 2046- PDA 2046,i=33.50 12KW
LBREVINI EC 3046- PDA 3046,i=36.75 7KW
LBREVINI EC 3046- PDA 3046,i=43.37 7KW
LBREVINI EC 3046- PDA 3046,i=49.80 7KW
LBREVINI EC 3046- PDA 3046,i=56.60 7KW
LBREVINI EC 3046- PDA 3046,i=63.00 7KW
LBREVINI EC 3046- PDA 3046,i=73.57 7KW
LBREVINI EC 3046- PDA 3046,i=83.60 7KW
LBREVINI EC 3046- PDA 3046,i=89.83 7KW
LBREVINI EC 3046- PDA 3046,i=97.02 7KW
LBREVINI EC 3046- PDA 3046,i=114.5 7KW
LBREVINI EC 3046- PDA 3046,i=123.5 7KW
LBREVINI EC 3046- PDA 3046,i=138.3 7KW
LBREVINI EC 3046- PDA 3046,i=166.3 7KW
LBREVINI EC 3046- PDA 3046,i=173.2 7KW
LBREVINI EC 3046- PDA 3046,i=201.0 7KW
LBREVINI EC 3046- PDA 3046,i=242.8 7KW
LBREVINI EC 4046 – PDA 4046,i=276.6 3KW
LBREVINI EC 4046 – PDA 4046,i=310.3 3KW
LBREVINI EC 4046 – PDA 4046,i=347.1 3KW
LBREVINI EC 4046 – PDA 4046,i=414.7 3KW
LBREVINI EC 4046 – PDA 4046,i=450.8 3KW
LBREVINI EC 4046 – PDA 4046,i=498.3. 3KW
LBREVINI EC 4046 – PDA 4046,i=570.0 3KW
LBREVINI EC 4046 – PDA 4046,i=625.0 3KW
LBREVINI EC 4046 – PDA 4046,i=712.7 3KW
LBREVINI EC 4046 – PDA 4046,i=799.3 3KW
LBREVINI EC 4046 – PDA 4046,i=929.1 3KW
LBREVINI EC 4046 – PDA 4046,i=988.1 3KW
LBREVINI EC 4046 – PDA 4046,i=1078 3KW
LBREVINI EC 4046 – PDA 4046,i=1194 3KW
LBREVINI EC 4046 – PDA 4046,i=1409 3KW
LBREVINI EC 4046 – PDA 4046,i=1593 3KW
LBREVINI EC 4046 – PDA 4046,i=1806 3KW
LBREVINI EC 4046 – PDA 4046,i=1925 3KW
LBREVINI EC 4046 – PDA 4046,i=2208 3KW
LBREVINI EC 4046 – PDA 4046,i=2563 3KW
LBREVINI EC 4046 – PDA 4046,i=2668 3KW
LBREVINI EC 4046 – PDA 4046,i=3097 3KW
LBREVINI S45 CR1 ED 2046  
LBREVINI S45 CR1 ET 3046  
LBREVINI S46 C ED 2046  
LBREVINI S46 C ET 3046  
LBREVINI SU 2 EM 1046  
LBREVINI SU 2 ED 2046  
LBREVINI SU 2 ET 3046  
LBREVINI SU 2 EQ 4046  
LBREVINI FL250 EM 1046  
LBREVINI FL250 ED 2046  
LBREVINI FL250 EC 2046  
LBREVINI FL250 EC 2046*  
LBREVINI FL250 EC 3046  
LBREVINI FL250 EC 3046*  
LBREVINI FL350 EM 1046  
LBREVINI FL350 ED 2046  
LBREVINI FL350 EC 2046  
LBREVINI FL350 EC 2046*  
LBREVINI FL350 EC 3046  
LBREVINI FL350 EC 3046*  
LBREVINI FL450 EM 1046  
LBREVINI FL450 ED 2046  
LBREVINI FL450 EC 2046  
LBREVINI FL450 EC 2046*  
LBREVINI FL450 EC 3046  
LBREVINI FL450 EC 3046*  
LBREVINI FL650 EM 1046  
LBREVINI FL650 ED 2046  
LBREVINI FL750 EM 1046  
LBREVINI FL750 ED 2046  
LBREVINI FL620.U EM 1046  
LBREVINI FL620.U ED 2046  
LBREVINI FL620.U ET 3046  
LBREVINI FL620.U EQ 4046  
LBREVINI FL620.U EC 2046  
LBREVINI FL620.U EC 2046*  
LBREVINI FL620.U EC 3046  
LBREVINI FL620.U EC 3046*  
LBREVINI FL635.U EM 1046  
LBREVINI FL635.U ED 2046  
LBREVINI FL635.U ET 3046  
LBREVINI FL635.U EQ 4046  
LBREVINI FL635.U EC 2046  
LBREVINI FL635.U EC 2046*  
LBREVINI FL635.U EC 3046  
LBREVINI FL635.U EC 3046*  
LBREVINI FL620.10 ED 2046  
LBREVINI FL620.10 ET 3046  
LBREVINI FL635.10 ED 2046  
LBREVINI FL635.10 ET 3046  
LBREVINI EM 1046 MN-MN 1  
LBREVINI ED 2046 MN-MN 1  
LBREVINI ET 3046 MN-MN 1  
LBREVINI EQ 4046 MN-MN1  
LBREVINI EC 2046 MN-MN 1  
LBREVINI EC 2046* MN-MN 1  
LBREVINI EC 3046 MN-MN 1  
LBREVINI EC 3046* MN-MN 1  
LBREVINI EC 4046* MN-MN1  
LBREVINI EM 1065,i=3.50 30KW
LBREVINI EM 1065,i=3.86 30KW
LBREVINI EM 1065,i=4.33 30KW
LBREVINI EM 1065,i=5.00 30KW
LBREVINI EM 1065,i=6.00 30KW
LBREVINI ED 2065,i=10.78 18KW
LBREVINI ED 2065,i=12.25 18KW
LBREVINI ED 2065,i=13.51 18KW
LBREVINI ED 2065,i=15.16 18KW
LBREVINI ED 2065,i=17.88 18KW
LBREVINI ED 2065,i=20.65 18KW
LBREVINI ED 2065,i=22.39 18KW
LBREVINI ED 2065,i=25.98 18KW
LBREVINI ED 2065,i=27.99 18KW
LBREVINI ED 2065,i=30.00 18KW
LBREVINI ED 2065,i=36.25 18KW
LBREVINI ED 2065,i=43.50 18KW
LBREVINI ET 3065,i=51.22 14KW
LBREVINI ET 3065,i=53.78 14KW
LBREVINI ET 3065,i=60.44 14KW
LBREVINI ET 3065,i=73.50 14KW
LBREVINI ET 3065,i=78.51 14KW
LBREVINI ET 3065,i=90.93 14KW
LBREVINI ET 3065,i=98.27 14KW
LBREVINI ET 3065,i=110.6 14KW
LBREVINI ET 3065,i=123.9 14KW
LBREVINI ET 3065,i=134.3 14KW
LBREVINI ET 3065,i=155.1 14KW
LBREVINI ET 3065,i=180.0 14KW
LBREVINI ET 3065,i=208.2 14KW
LBREVINI ET 3065,i=217.5 14KW
LBREVINI ET 3065,i=251.6 14KW
LBREVINI ET 3065,i=272.8 14KW
LBREVINI EQ 4065,i=322.7 8KW
LBREVINI EQ 4065,i=373.2 8KW
LBREVINI EQ 4065,i=411.6 8KW
LBREVINI EQ 4065,i=441.0 8KW
LBREVINI EQ 4065,i=510.1 8KW
LBREVINI EQ 4065,i=555.3 8KW
LBREVINI EQ 4065,i=631.1 8KW
LBREVINI EQ 4065,i=696.2 8KW
LBREVINI EQ 4065,i=771.8 8KW
LBREVINI EQ 4065,i=892.7 8KW
LBREVINI EQ 4065,i=994.6 8KW
LBREVINI EQ 4065,i=1104 8KW
LBREVINI EQ 4065,i=1303 8KW
LBREVINI EQ 4065,i=1445 8KW
LBREVINI EQ 4065,i=1631 8KW
LBREVINI EQ 4065,i=1884 8KW
LBREVINI EQ 4065,i=2095 8KW
LBREVINI EQ 4065,i=2186 8KW
LBREVINI EQ 4065,i=2468 8KW
LBREVINI EQ 4065,i=2850 8KW
LBREVINI EQ 4065,i=3170 8KW
LBREVINI EM 1065,i=3.50 30KW
LBREVINI EM 1065,i=3.86 30KW
LBREVINI EM 1065,i=4.33 30KW
LBREVINI EM 1065,i=5.00 30KW
LBREVINI EM 1065,i=6.00 30KW
LBREVINI ED 2065,i=10.78 18KW
LBREVINI ED 2065,i=12.25 18KW
LBREVINI ED 2065,i=13.51 18KW
LBREVINI ED 2065,i=15.16 18KW
LBREVINI ED 2065,i=17.88 18KW
LBREVINI ED 2065,i=20.65 18KW
LBREVINI ED 2065,i=22.39 18KW
LBREVINI ED 2065,i=25.98 18KW
LBREVINI ED 2065,i=27.99 18KW
LBREVINI ED 2065,i=30.00 18KW
LBREVINI ED 2065,i=36.25 18KW
LBREVINI ED 2065,i=43.50 18KW
LBREVINI ET 3065,i=51.22 14KW
LBREVINI ET 3065,i=53.78 14KW
LBREVINI ET 3065,i=60.44 14KW
LBREVINI ET 3065,i=73.50 14KW
LBREVINI ET 3065,i=78.51 14KW
LBREVINI ET 3065,i=90.93 14KW
LBREVINI ET 3065,i=98.27 14KW
LBREVINI ET 3065,i=110.6 14KW
LBREVINI ET 3065,i=123.9 14KW
LBREVINI ET 3065,i=134.3 14KW
LBREVINI ET 3065,i=155.1 14KW
LBREVINI ET 3065,i=180.0 14KW
LBREVINI ET 3065,i=208.2 14KW
LBREVINI ET 3065,i=217.5 14KW
LBREVINI ET 3065,i=251.6 14KW
LBREVINI ET 3065,i=272.8 14KW
LBREVINI EQ 4065,i=322.7 8KW
LBREVINI EQ 4065,i=373.2 8KW
LBREVINI EQ 4065,i=411.6 8KW
LBREVINI EQ 4065,i=441.0 8KW
LBREVINI EQ 4065,i=510.1 8KW
LBREVINI EQ 4065,i=555.3 8KW
LBREVINI EQ 4065,i=631.1 8KW
LBREVINI EQ 4065,i=696.2 8KW
LBREVINI EQ 4065,i=771.8 8KW
LBREVINI EQ 4065,i=892.7 8KW
LBREVINI EQ 4065,i=994.6 8KW
LBREVINI EQ 4065,i=1104 8KW
LBREVINI EQ 4065,i=1303 8KW
LBREVINI EQ 4065,i=1445 8KW
LBREVINI EQ 4065,i=1631 8KW
LBREVINI EQ 4065,i=1884 8KW
LBREVINI EQ 4065,i=2095 8KW
LBREVINI EQ 4065,i=2186 8KW
LBREVINI EQ 4065,i=2468 8KW
LBREVINI EQ 4065,i=2850 8KW
LBREVINI EQ 4065,i=3170 8KW
LBREVINI EC 2065- PDA 2065,i=10.50 14KW
LBREVINI EC 2065- PDA 2065,i=11.58 14KW
LBREVINI EC 2065- PDA 2065,i=12.99 14KW
LBREVINI EC 2065- PDA 2065,i=16.17 14KW
LBREVINI EC 2065- PDA 2065,i=17.83 14KW
LBREVINI EC 2065- PDA 2065,i=20.00 14KW
LBREVINI EC 2065- PDA 2065,i=23.10 14KW
LBREVINI EC 2065- PDA 2065,i=27.72 14KW
LBREVINI EC 3065 – PDA 3065,i=40.53 11KW
LBREVINI EC 3065 – PDA 3065,i=45.47 11KW
LBREVINI EC 3065 – PDA 3065,i=49.80 11KW
LBREVINI EC 3065 – PDA 3065,i=56.60 11KW
LBREVINI EC 3065 – PDA 3065,i=62.42 11KW
LBREVINI EC 3065 – PDA 3065,i=70.02 11KW
LBREVINI EC 3065 – PDA 3065,i=80.85 11KW
LBREVINI EC 3065 – PDA 3065,i=92.20 11KW
LBREVINI EC 3065 – PDA 3065,i=103.4 11KW
LBREVINI EC 3065 – PDA 3065,i=108.8 11KW
LBREVINI EC 3065 – PDA 3065,i=120.0 11KW
LBREVINI EC 3065 – PDA 3065,i=138.6 11KW
LBREVINI EC 3065 – PDA 3065,i=166.3 11KW
LBREVINI EC 3065 – PDA 3065,i=201.0 11KW
LBREVINI EC 4065 – PDA 4065,i=220.5 7KW
LBREVINI EC 4065 – PDA 4065,i=255.0 7KW
LBREVINI EC 4065 – PDA 4065,i=281.3 7KW
LBREVINI EC 4065 – PDA 4065,i=315.5 7KW
LBREVINI EC 4065 – PDA 4065,i=359.4 7KW
LBREVINI EC 4065 – PDA 4065,i=415.7 7KW
LBREVINI EC 4065 – PDA 4065,i=451.1 7KW
LBREVINI EC 4065 – PDA 4065,i=498.3 7KW
LBREVINI EC 4065 – PDA 4065,i=576.4 7KW
LBREVINI EC 4065 – PDA 4065,i=635.7 7KW
LBREVINI EC 4065 – PDA 4065,i=713.1 7KW
LBREVINI EC 4065 – PDA 4065,i=823.4 7KW
LBREVINI EC 4065 – PDA 4065,i=892.9 7KW
LBREVINI EC 4065 – PDA 4065,i=1018 7KW
LBREVINI EC 4065 – PDA 4065,i=1149 7KW
LBREVINI EC 4065 – PDA 4065,i=1220 7KW
LBREVINI EC 4065 – PDA 4065,i=1412 7KW
LBREVINI EC 4065 – PDA 4065,i=1594 7KW
LBREVINI EC 4065 – PDA 4065,i=1840 7KW
LBREVINI EC 4065 – PDA 4065,i=1861 7KW
LBREVINI EC 4065 – PDA 4065,i=2136 7KW
LBREVINI EC 4065 – PDA 4065,i=2581 7KW
LBREVINI EC 4065 – PDA 4065,i=3097 7KW
LBREVINI EC 2065- PDA 2065,i=10.50 14KW
LBREVINI EC 2065- PDA 2065,i=11.58 14KW
LBREVINI EC 2065- PDA 2065,i=12.99 14KW
LBREVINI EC 2065- PDA 2065,i=16.17 14KW
LBREVINI EC 2065- PDA 2065,i=17.83 14KW
LBREVINI EC 2065- PDA 2065,i=20.00 14KW
LBREVINI EC 2065- PDA 2065,i=23.10 14KW
LBREVINI EC 2065- PDA 2065,i=27.72 14KW
LBREVINI EC 3065 – PDA 3065,i=40.53 11KW
LBREVINI EC 3065 – PDA 3065,i=45.47 11KW
LBREVINI EC 3065 – PDA 3065,i=49.80 11KW
LBREVINI EC 3065 – PDA 3065,i=56.60 11KW
LBREVINI EC 3065 – PDA 3065,i=62.42 11KW
LBREVINI EC 3065 – PDA 3065,i=70.02 11KW
LBREVINI EC 3065 – PDA 3065,i=80.85 11KW
LBREVINI EC 3065 – PDA 3065,i=92.20 11KW
LBREVINI EC 3065 – PDA 3065,i=103.4 11KW
LBREVINI EC 3065 – PDA 3065,i=108.8 11KW
LBREVINI EC 3065 – PDA 3065,i=120.0 11KW
LBREVINI EC 3065 – PDA 3065,i=138.6 11KW
LBREVINI EC 3065 – PDA 3065,i=166.3 11KW
LBREVINI EC 3065 – PDA 3065,i=201.0 11KW
LBREVINI EC 4065 – PDA 4065,i=220.5 7KW
LBREVINI EC 4065 – PDA 4065,i=255.0 7KW
LBREVINI EC 4065 – PDA 4065,i=281.3 7KW
LBREVINI EC 4065 – PDA 4065,i=315.5 7KW
LBREVINI EC 4065 – PDA 4065,i=359.4 7KW
LBREVINI EC 4065 – PDA 4065,i=415.7 7KW
LBREVINI EC 4065 – PDA 4065,i=451.1 7KW
LBREVINI EC 4065 – PDA 4065,i=498.3 7KW
LBREVINI EC 4065 – PDA 4065,i=576.4 7KW
LBREVINI EC 4065 – PDA 4065,i=635.7 7KW
LBREVINI EC 4065 – PDA 4065,i=713.1 7KW
LBREVINI EC 4065 – PDA 4065,i=823.4 7KW
LBREVINI EC 4065 – PDA 4065,i=892.9 7KW
LBREVINI EC 4065 – PDA 4065,i=1018 7KW
LBREVINI EC 4065 – PDA 4065,i=1149 7KW
LBREVINI EC 4065 – PDA 4065,i=1220 7KW
LBREVINI EC 4065 – PDA 4065,i=1412 7KW
LBREVINI EC 4065 – PDA 4065,i=1594 7KW
LBREVINI EC 4065 – PDA 4065,i=1840 7KW
LBREVINI EC 4065 – PDA 4065,i=1861 7KW
LBREVINI EC 4065 – PDA 4065,i=2136 7KW
LBREVINI EC 4065 – PDA 4065,i=2581 7KW
LBREVINI EC 4065 – PDA 4065,i=3097 7KW
LBREVINI S45 CR1 EM 1065  
LBREVINI S45 CR1 ED 2065  
LBREVINI S46 C1 EM 1065  
LBREVINI S46 C1 ED 2065  
LBREVINI S65 CR1 EM 1065  
LBREVINI SU 2 EM 1065  
LBREVINI SU 2 ED 2065  
LBREVINI SU 2 ET 3065  
LBREVINI SU 2 EQ 4065  
LBREVINI 48.82 EC 2065  
LBREVINI 48.82 EC 3065  
LBREVINI FL250 EM 1065  
LBREVINI FL250 ED 2065  
LBREVINI FL250 EC 2065  
LBREVINI FL250 EC 2065*  
LBREVINI FL250 EC 3065  
LBREVINI FL250 EC 3065*  
LBREVINI FL350 EM 1065  
LBREVINI FL350 ED 2065  
LBREVINI FL350 EC 2065  
LBREVINI FL350 EC 2065*  
LBREVINI FL350 EC 3065  
LBREVINI FL350 EC 3065*  
LBREVINI FL450 EM 1065  
LBREVINI FL450 ED 2065  
LBREVINI FL450 EC 2065  
LBREVINI FL450 EC 2065*  
LBREVINI FL450 EC 3065  
LBREVINI FL450 EC 3065*  
LBREVINI FL650 EM 1065  
LBREVINI FL650 ED 2065  
LBREVINI FL750 EM 1065  
LBREVINI FL750 ED 2065  
LBREVINI FL950 EM 1065  
LBREVINI FL620.U EM 1065  
LBREVINI FL620.U ED 2065  
LBREVINI FL620.U ET 3065  
LBREVINI FL620.U EQ 4065  
LBREVINI FL620.U EC 2065  
LBREVINI FL620.U EC 2065*  
LBREVINI FL620.U EC 3065  
LBREVINI FL620.U EC 3065*  
LBREVINI FL635.U EM 1065  
LBREVINI FL635.U ED 2065  
LBREVINI FL635.U ET 3065  
LBREVINI FL635.U EQ 4065  
LBREVINI FL635.U EC 2065  
LBREVINI FL635.U EC 2065*  
LBREVINI FL635.U EC 3065  
LBREVINI FL635.U EC 3065*  
LBREVINI FL620.10 ET 3065  
LBREVINI FL620.10 EQ 4065  
LBREVINI FL635.10 ET 3065  
LBREVINI FL635.10 EQ 4065  
LBREVINI EM 1065 MR-MR1-FS  
LBREVINI EM1065 FE  
LBREVINI EM 1065 FP  
LBREVINI ED 2065 MR-MR1-FS  
LBREVINI ED 2065 FE  
LBREVINI ED 2065 FP  
LBREVINI ET 3065 MR-MR1-FS  
LBREVINI ET 3065 FE  
LBREVINI ET 3065 FP  
LBREVINI EQ 4065 MR-MR1-FS  
LBREVINI EQ 4065 FE  
LBREVINI EQ 4065 FP  
LBREVINI PD 1065 PD  
LBREVINI PD 2065 PD  
LBREVINI PD 3065 PD  
LBREVINI PD 4065 PD  
LBREVINI EC 2065 MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 2065* MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 3065 MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 3065* MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 4065 MR-MR1-FE-FS-FP-PDA  
LBREVINI EC 4065 MR-MR1-FE-FS-FP-PDA  
LBREVINI ED 2067,i=12.25 18KW
LBREVINI ED 2067,i=14.46 18KW
LBREVINI ED 2067,i=15.16 18KW
LBREVINI ED 2067,i=18.10 18KW
LBREVINI ED 2067,i=21.00 18KW
LBREVINI ED 2067,i=22.39 18KW
LBREVINI ED 2067,i=25.38 18KW
LBREVINI ED 2067,i=27.99 18KW
LBREVINI ED 2067,i=31.39 18KW
LBREVINI ED 2067,i=36.25 18KW
LBREVINI ED 2067,i=43.50 18KW
LBREVINI ET 3067,i=50.59 14KW
LBREVINI ET 3067,i=55.80 14KW
LBREVINI ET 3067,i=63.33 14KW
LBREVINI ET 3067,i=73.50 14KW
LBREVINI ET 3067,i=78.35 14KW
LBREVINI ET 3067,i=88.81 14KW
LBREVINI ET 3067,i=104.8 14KW
LBREVINI ET 3067,i=108.6 14KW
LBREVINI ET 3067,i=126.0 14KW
LBREVINI ET 3067,i=144.7 14KW
LBREVINI ET 3067,i=152.3 14KW
LBREVINI ET 3067,i=184.0 14KW
LBREVINI ET 3067,i=202.9 14KW
LBREVINI ET 3067,i=227.6 14KW
LBREVINI ET 3067,i=262.8 14KW
LBREVINI ET 3067,i=315.4 14KW
LBREVINI ED 2067,i=12.25 18KW
LBREVINI ED 2067,i=14.46 18KW
LBREVINI ED 2067,i=15.16 18KW
LBREVINI ED 2067,i=18.10 18KW
LBREVINI ED 2067,i=21.00 18KW
LBREVINI ED 2067,i=22.39 18KW
LBREVINI ED 2067,i=25.38 18KW
LBREVINI ED 2067,i=27.99 18KW
LBREVINI ED 2067,i=31.39 18KW
LBREVINI ED 2067,i=36.25 18KW
LBREVINI ED 2067,i=43.50 18KW
LBREVINI ET 3067,i=50.59 14KW
LBREVINI ET 3067,i=55.80 14KW
LBREVINI ET 3067,i=63.33 14KW
LBREVINI ET 3067,i=73.50 14KW
LBREVINI ET 3067,i=78.35 14KW
LBREVINI ET 3067,i=88.81 14KW
LBREVINI ET 3067,i=104.8 14KW
LBREVINI ET 3067,i=108.6 14KW
LBREVINI ET 3067,i=126.0 14KW
LBREVINI ET 3067,i=144.7 14KW
LBREVINI ET 3067,i=152.3 14KW
LBREVINI ET 3067,i=184.0 14KW
LBREVINI ET 3067,i=202.9 14KW
LBREVINI ET 3067,i=227.6 14KW
LBREVINI ET 3067,i=262.8 14KW
LBREVINI ET 3067,i=315.4 14KW
LBREVINI EC 3067 – PDA 3067,i=40.53 11KW
LBREVINI EC 3067 – PDA 3067,i=43.37 11KW
LBREVINI EC 3067 – PDA 3067,i=47.83 11KW
LBREVINI EC 3067 – PDA 3067,i=56.60 11KW
LBREVINI EC 3067 – PDA 3067,i=63.00 11KW
LBREVINI EC 3067 – PDA 3067,i=70.02 11KW
LBREVINI EC 3067 – PDA 3067,i=83.60 11KW
LBREVINI EC 3067 – PDA 3067,i=92.20 11KW
LBREVINI EC 3067 – PDA 3067,i=97.02 11KW
LBREVINI EC 3067 – PDA 3067,i=117.2 11KW
LBREVINI EC 3067 – PDA 3067,i=120.0 11KW
LBREVINI EC 3067 – PDA 3067,i=145.0 11KW
LBREVINI EC 3067 – PDA 3067,i=167.5 11KW
LBREVINI EC 3067 – PDA 3067,i=201.0 11KW
LBREVINI EC 3067 – PDA 3067,i=40.53 11KW
LBREVINI EC 3067 – PDA 3067,i=43.37 11KW
LBREVINI EC 3067 – PDA 3067,i=47.83 11KW
LBREVINI EC 3067 – PDA 3067,i=56.60 11KW
LBREVINI EC 3067 – PDA 3067,i=63.00 11KW
LBREVINI EC 3067 – PDA 3067,i=70.02 11KW
LBREVINI EC 3067 – PDA 3067,i=83.60 11KW
LBREVINI EC 3067 – PDA 3067,i=92.20 11KW
LBREVINI EC 3067 – PDA 3067,i=97.02 11KW
LBREVINI EC 3067 – PDA 3067,i=117.2 11KW
LBREVINI EC 3067 – PDA 3067,i=120.0 11KW
LBREVINI EC 3067 – PDA 3067,i=145.0 11KW
LBREVINI EC 3067 – PDA 3067,i=167.5 11KW
LBREVINI EC 3067 – PDA 3067,i=201.0 11KW
LBREVINI S45 CR1 ED 2067  
LBREVINI S45 CR1 ET 3067  
LBREVINI S46 C1 ED 2067  
LBREVINI S46 C1 ET 3067  
LBREVINI SU 2 ED 2067  
LBREVINI SU 2 ET 3067  
LBREVINI 48.82 ET 3067  
LBREVINI FL250 ED 2067  
LBREVINI FL250 ET 3067  
LBREVINI FL250 EC 3067  
LBREVINI FL250 EC 3067*  
LBREVINI FL350 ED 2067  
LBREVINI FL350 ET 3067  
LBREVINI FL350 EC 3067  
LBREVINI FL350 EC 3067*  
LBREVINI FL450 ED 2067  
LBREVINI FL450 ET 3067  
LBREVINI FL450 EC 3067  
LBREVINI FL450 EC 3067*  
LBREVINI FL650 ED 2067  
LBREVINI FL650 ET 3067  
LBREVINI FL750 ED 2067  
LBREVINI FL750 ET 3067  
LBREVINI FL620.U ED 2067  
LBREVINI FL620.U ET 3067  
LBREVINI FL620.U EC 3067  
LBREVINI FL620.U EC 3067*  
LBREVINI FL635.U ED 2067  
LBREVINI FL635.U ET 3067  
LBREVINI FL635.U EC 3067  
LBREVINI FL635.U EC 3067*  
LBREVINI FL620.10 ET 3067  
LBREVINI FL635.10 ET 3067  
LBREVINI ED 2067 MR-MR1-FS  
LBREVINI ED 2067 FE  
LBREVINI ED 2067 FP  
LBREVINI ET 3067 MR-MR1-FS  
LBREVINI ET 3067 FE  
LBREVINI ET 3067 FP  
LBREVINI PD 2067 PD  
LBREVINI PD 3067 PD  
LBREVINI EC 3067 MR-MR1-FE-FS-FP  
LBREVINI EC 3067* MR-MR1-FE-FS-FP  
LBREVINI PDA3069 PDA  
LBREVINI PDA 3069* PDA  
LBREVINI EM 1090,i=4.08 40KW
LBREVINI EM 1090,i=5.05 40KW
LBREVINI EM 1090,i=5.81 40KW
LBREVINI EM 1090,i=6.92 40KW
LBREVINI EM 1090,i=8.70 40KW
LBREVINI ED 2090,i=14.28 23KW
LBREVINI ED 2090,i=16.85 23KW
LBREVINI ED 2090,i=17.68 23KW
LBREVINI ED 2090,i=21.09 23KW
LBREVINI ED 2090,i=24.48 23KW
LBREVINI ED 2090,i=29.58 23KW
LBREVINI ED 2090,i=30.30 23KW
LBREVINI ED 2090,i=36.61 23KW
LBREVINI ED 2090,i=41.52 23KW
LBREVINI ED 2090,i=44.98 23KW
LBREVINI ED 2090,i=50.17 23KW
LBREVINI ET 3090,i=58.98 15KW
LBREVINI ET 3090,i=61.86 15KW
LBREVINI ET 3090,i=73.83 15KW
LBREVINI ET 3090,i=75.40 15KW
LBREVINI ET 3090,i=87.12 15KW
LBREVINI ET 3090,i=101.1 15KW
LBREVINI ET 3090,i=109.1 15KW
LBREVINI ET 3090,i=126.6 15KW
LBREVINI ET 3090,i=146.9 15KW
LBREVINI ET 3090,i=152.9 15KW
LBREVINI ET 3090,i=177.5 15KW
LBREVINI ET 3090,i=209.2 15KW
LBREVINI ET 3090,i=219.7 15KW
LBREVINI ET 3090,i=252.7 15KW
LBREVINI ET 3090,i=265.4 15KW
LBREVINI ET 3090,i=305.4 15KW
LBREVINI ET 3090,i=363.7 15KW
LBREVINI EQ 4090,i=409.3 11KW
LBREVINI EQ 4090,i=443.0 11KW
LBREVINI EQ 4090,i=512.4 11KW
LBREVINI EQ 4090,i=555.6 11KW
LBREVINI EQ 4090,i=654.3 11KW
LBREVINI EQ 4090,i=718.5 11KW
LBREVINI EQ 4090,i=779.1 11KW
LBREVINI EQ 4090,i=878.3 11KW
LBREVINI EQ 4090,i=1019 11KW
LBREVINI EQ 4090,i=1145 11KW
LBREVINI EQ 4090,i=1232 11KW
LBREVINI EQ 4090,i=1329 11KW
LBREVINI EQ 4090,i=1606 11KW
LBREVINI EQ 4090,i=1864 11KW
LBREVINI EQ 4090,i=1988 11KW
LBREVINI EQ 4090,i=2307 11KW
LBREVINI EQ 4090,i=2524 11KW
LBREVINI EQ 4090,i=2787 11KW
LBREVINI EQ 4090,i=3207 11KW
LBREVINI EM 1090,i=4.08 40KW
LBREVINI EM 1090,i=5.05 40KW
LBREVINI EM 1090,i=5.81 40KW
LBREVINI EM 1090,i=6.92 40KW
LBREVINI EM 1090,i=8.70 40KW
LBREVINI ED 2090,i=14.28 23KW
LBREVINI ED 2090,i=16.85 23KW
LBREVINI ED 2090,i=17.68 23KW
LBREVINI ED 2090,i=21.09 23KW
LBREVINI ED 2090,i=24.48 23KW
LBREVINI ED 2090,i=29.58 23KW
LBREVINI ED 2090,i=30.30 23KW
LBREVINI ED 2090,i=36.61 23KW
LBREVINI ED 2090,i=41.52 23KW
LBREVINI ED 2090,i=44.98 23KW
LBREVINI ED 2090,i=50.17 23KW
LBREVINI ET 3090,i=58.98 15KW
LBREVINI ET 3090,i=61.86 15KW
LBREVINI ET 3090,i=73.83 15KW
LBREVINI ET 3090,i=75.40 15KW
LBREVINI ET 3090,i=87.12 15KW
LBREVINI ET 3090,i=101.1 15KW
LBREVINI ET 3090,i=109.1 15KW
LBREVINI ET 3090,i=126.6 15KW
LBREVINI ET 3090,i=146.9 15KW
LBREVINI ET 3090,i=152.9 15KW
LBREVINI ET 3090,i=177.5 15KW
LBREVINI ET 3090,i=209.2 15KW
LBREVINI ET 3090,i=219.7 15KW
LBREVINI ET 3090,i=252.7 15KW
LBREVINI ET 3090,i=265.4 15KW
LBREVINI ET 3090,i=305.4 15KW
LBREVINI ET 3090,i=363.7 15KW
LBREVINI EQ 4090,i=409.3 11KW
LBREVINI EQ 4090,i=443.0 11KW
LBREVINI EQ 4090,i=512.4 11KW
LBREVINI EQ 4090,i=555.6 11KW
LBREVINI EQ 4090,i=654.3 11KW
LBREVINI EQ 4090,i=718.5 11KW
LBREVINI EQ 4090,i=779.1 11KW
LBREVINI EQ 4090,i=878.3 11KW
LBREVINI EQ 4090,i=1019 11KW
LBREVINI EQ 4090,i=1145 11KW
LBREVINI EQ 4090,i=1232 11KW
LBREVINI EQ 4090,i=1329 11KW
LBREVINI EQ 4090,i=1606 11KW
LBREVINI EQ 4090,i=1864 11KW
LBREVINI EQ 4090,i=1988 11KW
LBREVINI EQ 4090,i=2307 11KW
LBREVINI EQ 4090,i=2524 11KW
LBREVINI EQ 4090,i=2787 11KW
LBREVINI EQ 4090,i=3207 11KW
LBREVINI EC 2090- PDA 2090,i=12.24 18KW
LBREVINI EC 2090- PDA 2090,i=15.15 18KW
LBREVINI EC 2090- PDA 2090,i=17.43 18KW
LBREVINI EC 2090- PDA 2090,i=20.76 18KW
LBREVINI EC 2090- PDA 2090,i=23.33 18KW
LBREVINI EC 2090- PDA 2090,i=26.84 18KW
LBREVINI EC 2090- PDA 2090,i=31.97 18KW
LBREVINI EC 2090- PDA 2090,i=40.19 18KW
LBREVINI EC 3090 – PDA 3090,i=42.84 15KW
LBREVINI EC 3090 – PDA 3090,i=50.55 15KW
LBREVINI EC 3090 – PDA 3090,i=53.03 15KW
LBREVINI EC 3090 – PDA 3090,i=65.97 15KW
LBREVINI EC 3090 – PDA 3090,i=73.44 15KW
LBREVINI EC 3090 – PDA 3090,i=77.85 15KW
LBREVINI EC 3090 – PDA 3090,i=90.90 15KW
LBREVINI EC 3090 – PDA 3090,i=97.45 15KW
LBREVINI EC 3090 – PDA 3090,i=113.1 15KW
LBREVINI EC 3090 – PDA 3090,i=120.6 15KW
LBREVINI EC 3090 – PDA 3090,i=140.0 15KW
LBREVINI EC 3090 – PDA 3090,i=161.1 15KW
LBREVINI EC 3090 – PDA 3090,i=169.1 15KW
LBREVINI EC 3090 – PDA 3090,i=194.6 15KW
LBREVINI EC 3090 – PDA 3090,i=231.8 15KW
LBREVINI EC 4090 – PDA 4090,i=285.8 10KW
LBREVINI EC 4090 – PDA 4090,i=321.5 10KW
LBREVINI EC 4090 – PDA 4090,i=341.1 10KW
LBREVINI EC 4090 – PDA 4090,i=395.8 10KW
LBREVINI EC 4090 – PDA 4090,i=467.1 10KW
LBREVINI EC 4090 – PDA 4090,i=503.8 10KW
LBREVINI EC 4090 – PDA 4090,i=564.4 10KW
LBREVINI EC 4090 – PDA 4090,i=623.6 10KW
LBREVINI EC 4090 – PDA 4090,i=706.5 10KW
LBREVINI EC 4090 – PDA 4090,i=820.0 10KW
LBREVINI EC 4090 – PDA 4090,i=874.5 10KW
LBREVINI EC 4090 – PDA 4090,i=1015 10KW
LBREVINI EC 4090 – PDA 4090,i=1168 10KW
LBREVINI EC 4090 – PDA 4090,i=1226 10KW
LBREVINI EC 4090 – PDA 4090,i=1411 10KW
LBREVINI EC 4090 – PDA 4090,i=1680 10KW
LBREVINI EC 4090 – PDA 4090,i=1748 10KW
LBREVINI EC 4090 – PDA 4090,i=2113 10KW
LBREVINI EC 2090- PDA 2090,i=12.24 18KW
LBREVINI EC 2090- PDA 2090,i=15.15 18KW
LBREVINI EC 2090- PDA 2090,i=17.43 18KW
LBREVINI EC 2090- PDA 2090,i=20.76 18KW
LBREVINI EC 2090- PDA 2090,i=23.33 18KW
LBREVINI EC 2090- PDA 2090,i=26.84 18KW
LBREVINI EC 2090- PDA 2090,i=31.97 18KW
LBREVINI EC 2090- PDA 2090,i=40.19 18KW
LBREVINI EC 3090 – PDA 3090,i=42.84 15KW
LBREVINI EC 3090 – PDA 3090,i=50.55 15KW
LBREVINI EC 3090 – PDA 3090,i=53.03 15KW
LBREVINI EC 3090 – PDA 3090,i=65.97 15KW
LBREVINI EC 3090 – PDA 3090,i=73.44 15KW
LBREVINI EC 3090 – PDA 3090,i=77.85 15KW
LBREVINI EC 3090 – PDA 3090,i=90.90 15KW
LBREVINI EC 3090 – PDA 3090,i=97.45 15KW
LBREVINI EC 3090 – PDA 3090,i=113.1 15KW
LBREVINI EC 3090 – PDA 3090,i=120.6 15KW
LBREVINI EC 3090 – PDA 3090,i=140.0 15KW
LBREVINI EC 3090 – PDA 3090,i=161.1 15KW
LBREVINI EC 3090 – PDA 3090,i=169.1 15KW
LBREVINI EC 3090 – PDA 3090,i=194.6 15KW
LBREVINI EC 3090 – PDA 3090,i=231.8 15KW
LBREVINI EC 4090 – PDA 4090,i=285.8 10KW
LBREVINI EC 4090 – PDA 4090,i=321.5 10KW
LBREVINI EC 4090 – PDA 4090,i=341.1 10KW
LBREVINI EC 4090 – PDA 4090,i=395.8 10KW
LBREVINI EC 4090 – PDA 4090,i=467.1 10KW
LBREVINI EC 4090 – PDA 4090,i=503.8 10KW
LBREVINI EC 4090 – PDA 4090,i=564.4 10KW
LBREVINI EC 4090 – PDA 4090,i=623.6 10KW
LBREVINI EC 4090 – PDA 4090,i=706.5 10KW
LBREVINI EC 4090 – PDA 4090,i=820.0 10KW
LBREVINI EC 4090 – PDA 4090,i=874.5 10KW
LBREVINI EC 4090 – PDA 4090,i=1015 10KW
LBREVINI EC 4090 – PDA 4090,i=1168 10KW
LBREVINI EC 4090 – PDA 4090,i=1226 10KW
LBREVINI EC 4090 – PDA 4090,i=1411 10KW
LBREVINI EC 4090 – PDA 4090,i=1680 10KW
LBREVINI EC 4090 – PDA 4090,i=1748 10KW
LBREVINI EC 4090 – PDA 4090,i=2113 10KW
LBREVINI S45 C R1 EM 1090  
LBREVINI S45 C R1 ED 2090  
LBREVINI S45 C R1 ET 3090  
LBREVINI S46 C1 EM 1090  
LBREVINI S46 C1 ET 2090  
LBREVINI S46 C1 ET 3090  
LBREVINI SU 2 EM 1090  
LBREVINI SU 2 ED 2090  
LBREVINI SU 2 ET 3090  
LBREVINI SU 2 EQ 4090  
LBREVINI 48.82 EC 2090  
LBREVINI 48.82 EC 3090  
LBREVINI 48.82 EC 4090  
LBREVINI FL250 EM 1090  
LBREVINI FL250 ED 2090  
LBREVINI FL250 ET 3090  
LBREVINI FL250 EC 2090  
LBREVINI FL250 EC 2090*  
LBREVINI FL250 EC 3090  
LBREVINI FL250 EC 3090*  
LBREVINI FL250 EC 4090  
LBREVINI FL250 EC 4090*  
LBREVINI FL350 EM 1090  
LBREVINI FL350 ED 2090  
LBREVINI FL350 ET 3090  
LBREVINI FL350 EC 2090  
LBREVINI FL350 EC 2090*  
LBREVINI FL350 EC 3090  
LBREVINI FL350 EC 3090*  
LBREVINI FL350 EC 4090  
LBREVINI FL350 EC 4090*  
LBREVINI FL450 EM 1090  
LBREVINI FL450 ED 2090  
LBREVINI FL450 ET 3090  
LBREVINI FL450 EC 2090  
LBREVINI FL450 EC 2090*  
LBREVINI FL450 EC 3090  
LBREVINI FL450 EC 3090*  
LBREVINI FL450 EC 4090  
LBREVINI FL450 EC 4090*  
LBREVINI FL650 EM 1090  
LBREVINI FL650 ED 2090  
LBREVINI FL650 ET 3090  
LBREVINI FL750 EM 1090  
LBREVINI FL750 ED 2090  
LBREVINI FL750 ET 3090  
LBREVINI FL950 EM 1090  
LBREVINI FL950 ED 2090  
LBREVINI FL620.U EM 1090  
LBREVINI FL620.U ED 2090  
LBREVINI FL620.U ET 3090  
LBREVINI FL620.U EQ 4090  
LBREVINI FL620.U EC 2090  
LBREVINI FL620.U EC 2090*  
LBREVINI FL620.U EC 3090  
LBREVINI FL620.U EC 3090*  
LBREVINI FL620.U EC 4090  
LBREVINI FL620.U EC 4090*  
LBREVINI FL635.U EM 1090  
LBREVINI FL635.U ED 2090  
LBREVINI FL635.U ET 3090  
LBREVINI FL635.U EQ 4090  
LBREVINI FL635.U EC 2090  
LBREVINI FL635.U EC 2090*  
LBREVINI FL635.U EC 3090  
LBREVINI FL635.U EC 3090*  
LBREVINI FL635.U EC 4090  
LBREVINI FL635.U EC 4090*  
LBREVINI FL620.10 EQ 4090  
LBREVINI FL635.10 EQ 4090  
LBREVINI EM 1090 MN-MN1-FE-FS  
LBREVINI EM 1090 MR-MR1  
LBREVINI EM 1090 FP  
LBREVINI ED 2090 MN-MN1-FE-FS  
LBREVINI ED 2090 MR-MR1  
LBREVINI ED 2090 FP  

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, Marine, Agricultural 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

How to Select a Planetary Gearbox for Your Applications

You can select the most suitable Planetary Gearbox for your applications after carefully checking the various features. You should also consider secondary features like noise level, corrosion resistance, construction, price, delivery time and service. You should also check if the constructor is available across the world, because some constructors operate faster than others. Some constructors even respond to your requests on the same day, while others deliver each planetary gearbox even if they are out of stock.

CZPT gearbox

An CZPT planetary gearbox is a high-quality, compact, and lightweight gearbox that distributes loads over several gears. The planetary gearbox has a polymer case that ensures quiet operation. The company is committed to the circular economy, investing in chemical recycling and promoting the use of recycled materials wherever possible. For more information, visit CZPT’s website or contact an CZPT expert today.
A planetary gearbox contains a sun gear, which is known as the input gear. The other gears are called planets, and these are mounted on a carrier, which is connected to an output shaft. A planetary gearbox is characterized by its high reduction ratios, energy savings, and compact design. It offers superior durability and trouble-free service. Whether you need a large or small planetary gearbox, you can find one to suit your needs.
The Standard series planetary gearboxes are a cost-effective alternative to premium series gearboxes. These gearboxes are suitable for applications requiring only mild backlash or with low IP65 protection. ABB positioners feature seven different gear unit variants, allowing for standardized mounting and stranded wire connections. The drygear(r) strain wave gear has a stranded wire connector and is available with a three-year warranty.
A planetary gearbox can be used for various applications, from lifting goods to loading and unloading products in a factory. The company has a wide product range for different applications, including plastic machinery and machine tools, pick-and-place robots, mill drives, and wind turbines. It can also be used to operate robot gripper systems. Its high-quality planetary gears are designed to last for many years, making it an ideal solution for many industries.

CZPT

A planetary gearbox is an essential component of many transport systems. These devices work by aligning the output and input shafts. The Reggiana planetary gearbox 2000 series includes bevel stages and linear variants. The company offers modularity and flexibility with output configurations in ten different gear sizes. Each planetary gearbox can also be customized to meet the specific needs of a specific application.
CZPT is the Australian branch of CZPT, a leading global manufacturer of planetary gearboxes. CZPT is located in Carrum Downs, south east of Melbourne, and is one of the leading suppliers of planetary reduction gears, hydraulic failsafe brakes, and wheel drives. The company aims to provide high-quality, durable products that can be used in a variety of applications.
A CZPT Plus Series Gear is designed to maximize flexibility in a variety of applications. The gearbox’s modular design allows for endless scalability. The CZPT Plus Series Gear is commonly used in mining operations, and is known for its raw output capabilities and low maintenance design. It is made with high-quality materials, and it is also available in multiple sizes for customized applications.
The multi-stage planetary gearbox can combine individual ratios to increase the overall multiplicative factor. The planetary gears may also be combined to increase the transmittable torque. The output shaft and drive shaft may rotate in opposite directions, or they can be fixed so the gearbox can function in either direction. If the ring gear is fixed, planetary gearboxes can be realized as multi-stage.
planetarygearbox

CZPT

The CZPT Planetary Gearbox is the perfect combination of compact size and high efficiency in power transmission. The compact design allows this gearbox to run silently while still delivering high power density and transmission efficiency. The CZPT Planetary Gearbox has several advantages. Unlike conventional planetary gearboxes, CZPT’s planetary gearbox features high power density, low torque, and optimum transmission efficiency.
CZPT’s products have been used in a variety of applications for many years, proving their reliability and quality. These products are renowned in the world for their reliability and quality. CZPT’s planetary gearboxes are backed by a five-year warranty. These features help customers choose a planetary gearbox that meets their needs and stays in top shape for years to come. But how do you test a planetary gearbox?
Figure 17 shows the response of a planetary gearbox to vibration. The maximum displacement in xg direction at a 50% crack level is shown by the dashed line. The signal in xg direction is called the xsignal. Moreover, the CZPT Planetary Gearbox’s vibration response is highly sensitive to the location of the bearings. For this reason, dynamic modeling of a planetary gearbox should consider bearing clearance.
CZPT’s hollow cup motor drive system features high reliability and low power consumption. The gearbox is compatible with industries with high quality standards, as there is no cogging torque. Its compact size and low electromagnetic noise make it ideal for a variety of applications. For industries with high product quality requirements, the CZPT Hollow Cup Motor Drive System is an excellent choice. It is also designed for vertical installation. You can even buy multiple CZPT products to meet your specific needs.

CZPT

With its PL series planetary gearboxes, CZPT has expanded its product portfolio to include more types of drive solutions. CZPT is one of the few companies to have won the Schneider Electric Supplier Award for Quality. In addition, its high-quality planetary gearboxes are highly customizable, allowing designers to customize each gearbox for the application at hand. Whether it is a geared pump or a stepper motor, CZPT’s PLE planetary gearboxes are built to meet the exact specifications of the application at hand.
The flange-mounted version of the planetary gearbox is comparable to its planetary counterpart. Using a flange-mounted planetary gearbox allows for a smaller, more compact design. This model also features a large-diameter output shaft, which helps achieve a higher level of torsional stiffness. This makes CZPT flange gearboxes particularly useful for applications where the direction of motion can change frequently. These gearboxes can be used with a wide variety of belts.
The PLQE 60-mm gearbox is used in Outrider’s single-stage design. Its gear ratio is 5:1, while its dual-stage version has a 15:1 gear ratio. Both gearboxes have identical mounting configurations, but the two-stage version is slightly longer.
The PLN series of planetary gearheads from CZPT are the standard for high-precision applications. They’re compatible with all major motor brands and sizes, and the company’s adapter kits are available to fit almost any motor. This makes CZPT gearheads one of the easiest to integrate into a complex machine. They’re also extremely easy to install, with the same torque as their corresponding spur gears.
planetarygearbox

CZPT’s

If you are looking for an efficient solution for screw press applications, consider using CZPT’s 300M Planetary Gearbox. It has high axial and radial load capacities, compact design, high torque output, and torque arm. The 300M planetary gearbox is compatible with a variety of screw presses, including hydraulic press systems and digester systems. Its Torque control and direct coupling feature makes it easy to install.
CZPT’s small planetary gearboxes have an output torque of 20:1 from individual ratios of 5:1 and 4:1. They run silently and deliver maximum transmission efficiency. The planetary gears are mounted on a ring that is fixed around the center sun gear. The ring acts as an output torque converter for the next planet stage. This planetary gearbox has multiple stages and a maximum ratio of 20:1 can be created from individual ratios of 5:1 and 4:1.
CZPT Motor is an innovator in the design and manufacture of miniature motors for industrial robots. Its offerings include brushless DC and brushed DC motors, as well as planetary gearboxes, encoders, and brakes. CZPT’s products have a variety of uses in robotics, intelligent appliances, medical equipment, communication, and industrial automation. The company is also committed to providing custom designs based on customer specifications.
Another advantage of a planetary gearbox is its high power transmission efficiency. It is capable of approximately 3% per stage, allowing it to transmit more torque than a conventional single-stage gearbox. Planetary gearboxes are also compact and have a high torque-to-weight ratio. CZPT’s Planetary Gearbox is the best choice for many applications. This gearbox offers the highest efficiency and is ideal for small-scale production.

China high quality Speed Reducer FL635. U Ec 3045, FL620.10 Et 3045, FL620.10 EQ 4045 Series Gearbox for Construction Machinery, Port Equipment Spare Parts   planetary gearbox clutchChina high quality Speed Reducer FL635. U Ec 3045, FL620.10 Et 3045, FL620.10 EQ 4045 Series Gearbox for Construction Machinery, Port Equipment Spare Parts   planetary gearbox clutch
editor by Dream 2024-05-07

China best High Quality Worm Gearbox Speed Reducer (FCNDK) for Sand Muller

Product Description

Product Description

1.made-of high-quality aluminium alloy,light weight and non-rusting
2. large output torque
3. smooth running and low noise
4. high radiating efficiency
5. good-looking appearance,durable service life and small volume
6. suitable for omnibeaing installation

 

 
FCNDK
 
 

   

Size
 
 A
 
 B
 
 C
 
 D(H7)
 
 D1(J6)
 
 E
 
 F
 
 G
 
 G1
 
G
 
 H
 
 I
 
 L
 
 M
 
 N(h8)
 
 N1
 
 O
 
 P
 
 Q
 

 
 30
 
 54
 
 20
 
 80
 
 14
 
 9
 
97 
 
32
 
55
 
63
 
51
 
40
 
30
 
56
 
65
 
55
 
29
 
6.5
 
75
 
44
 
57
 
 40
 
 70
 
 23
 
 100
 
 18(19)
 
 11
 
121.5 
 
43 
 
70 
 
78
 
60
 
50
 
40
 
71
 
75
 
60
 
36.5
 
6.5
 
87
 
55
 
71.5
 
 50
 
 80
 
 30
 
 120
 
 25(24)
 
 14
 
144 
 
49 
 
80
 
92
 
74
 
60
 
50
 
85
 
85
 
70
 
43.5
 
8.5
 
 100
 
64
 
84
 
 63
 
 100
 
 40
 
 144
 
 25(28)
 
 19
 
 174
 
67
 
95
 
112
 
90
 
72
 
63
 
103
 
95
 
80
 
53
 
8.5
 
110
 
80
 
102
 
 75
 
 120
 
 50
 
 172
 
 28(35)
 
 24
 
 205
 
72
 
112.5
 
120
 
105
 
86
 
75
 
112
 
115
 
95
 
57
 
11
 
140
 
93
 
119
 
 90
 
 140
 
 50
 
 208
 
 35(38)
 
24
 
238 
 
74 
 
129.5
 
140
 
125
 
103
 
90
 
130
 
130
 
110
 
67
 
13
 
160
 
102
 
135
 
 110
 
 170
 
 60
 
 252.5
 
 42
 
 28
 
 295
 
– 
 
160
 
155
 
142
 
127.5
 
110
 
144
 
165
 
130
 
74
 
14
 
200
 
125
 
167.5
 
 130
 
 200
 
 80
 
 292.5
 
 45
 
 30
 
 335
 

 
180
 
170
 
162
 
147.5
 
130
 
155
 
215
 
180
 
81
 
16
 
250
 
140
 
187.5
 

 

Size
 
 S
 
T
 
V
 
K
 
KA 
 
KB 
 
 KC
 
KE 
 
α 
 
 α1
 
 KM
 
 KN(H8)
 
F
 
FB
 
FL
 
F
 
FB
 
FL
 
F
 
FB
 
FL
 
F
 
FB
 
FL
 
F
 
FB
 
FL
 
30
 
5.5
 
21
 
27
 
44
 
54.5
 

 

 
6
 

 

 
4
 

 

 
M6X11(n,4)
 
0 0
 
45 0
 
68
 

 

 
50
 

 

 
40
 
6.5
 
26
 
35
 
60
 
67
 
76.5
 
97
 
7
 
9
 
7
 
4
 
5
 
4
 
M6X8(n,4)
 
45 0
 
45 0
 
87
 
115
 
87
 
60
 
95
 
60
 
50
 
7
 
30
 
40
 
70
 
90
 
87.5
 
120
 
9
 
10
 
9
 
5
 
5
 
5
 
M8X10(n,4)
 
45 0
 
45 0
 
90
 
130
 
90
 
70
 
110
 
70
 
63
 
8
 
36
 
50
 
85
 
82
 
99
 
112
 
10
 
11
 
10
 
6
 
5
 
6
 
M8X14(n,8)
 
45 0
 
45 0
 
150
 
165
 
150
 
115
 
130
 
115
 
75
 
10
 
40
 
60
 
90
 
111
 

 

 
13
 

 

 
6
 

 

 
M8X14(n,8)
 
45 0
 
45 0
 
165
 

 

 
130
 

 

 
90
 
11
 
45
 
70
 
100
 
111
 

 

 
13
 

 

 
6
 

 

 
M10X18(n,8)
 
45 0
 
45 0
 
175
 

 

 
152
 

 

 
110
 
14
 
50
 
85
 
115
 
131
 

 

 
15
 

 

 
6
 

 

 
M10X18(n,8)
 
45 0
 
45 0
 
230
 

 

 
170
 

 

 
130
 
15
 
60
 
100
 
120
 
140
 

 

 
15
 

 

 
6
 

 

 
M12X21(n,8)
 
45 0
 
22.5 0
 
256
 

 

 
180
 

 

 

 

 Size
 
 KO
 
 KP
 
KQ 
 
 b
 
 b1
 
 f
 
 t
 
t1 
 
 kg
 
F
 
FL
 
FB
 
F
 
FB
 
FL
 
F
 
FB
 
FL
 
30
 
6.5(n,4)
 

 

 
80
 

 

 
70
 

 

 
5
 
3
 

 
16.3
 
10.2
 
1.2
 
40
 
9(n,4)
 
9.5(n,4)
 
9(n,4)
 
110
 
140
 
110
 
95
 

 
95
 
6(6)
 
4
 

 
20.8(21.8)
 
12.5
 
2.3
 
50
 
11(n,4)
 
9.5(n,4)
 
1                        
            180
 
142
 

 
142
 
8(8)
 
6
 
M6
 
28.3(31.3)
 
21.5
 
6.2
 
75
 
14(n,4)
 
                         
               
 

 
14
 
8
 
M10
 
48.8
 
33.0
 
48
 

 

Company Profile

 

l  The largest manufacturer and exporter of worm gear reducers in Asia.

 

l  Established in 1976, we transformed from a county owned factory to private 1 in 1996. HangZhou SINO-DEUTSCH POWER TRANSMISSION EQUIPMENT CO.,LTD is our new name since 2001.

 

l  We are the first manufacturer of reducers and gearboxes in China who was given export license since year 1993.

 

l  “Fixedstar” brand gearboxes and reducers are the first owner of CHINA TOP BRAND and Most Famous Trade Mark for reducers.

First to achieve ISO9001 and CE Certificate among all manufacturers of gearboxes in China.

   
As a professional manufacturer of worm gearbox and worm gear reducers in China, we mainly produce reduction gearbox,aluminum case worm gearboxes,arc gear cylindrical worm gearboxes, worm gear reducers, in line helical gearboxes, and cyclo drive reducers, etc. These products feature rational structure, stable performance, and reliable quality, and so on. They are widely used in power, mining, metallurgy, building material, chemical, food, printing, ceramic, paper-making, tobacco, and other industries.

We have 600 workers in our factory, which covers 70,000 square CHINAMFG in HangZhou. We have been making 2,500 units of reducers everyday since 2012. We are proudly exporting 70% of our products to more than 40 countries all over the word. Our customers come from Italy, Germany, USA, Canada, Spain, UK, Mexico, Brazil, Argentina, Turkey, Singapore and other main industrial countries in the world. 30% of them are OEM made for direct manufacturers of other products. 

 

We warmly welcome customers from other parts of the world to visit us. Seeing is believing. We are very confident that after visiting our facility, you will have confidence on our products. We have the latest automatic equipments and experienced workers to ensure the stable quality and large output. We have the most sophisticated technical and engineering team to support most demanding requirement on standard and OEM products.
 

Looking CHINAMFG to meeting you in HangZhou, China.

 
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Application: Motor, Machinery, Marine, Agricultural Machinery
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Vertical
Gear Shape: Bevel Gear
Step: Single-Step
Customization:
Available

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winch drive

How do winch drives contribute to the adaptability and versatility of mechanical systems in various settings?

Winch drives play a significant role in enhancing the adaptability and versatility of mechanical systems in various settings. Here’s a detailed explanation of how winch drives contribute to adaptability and versatility:

  • Flexible Load Handling:

Winch drives offer flexibility in load handling, allowing mechanical systems to adapt to different requirements. They can handle a wide range of loads, from light to heavy, and provide precise control over the lifting, lowering, and positioning of loads. The ability to adjust the speed, torque, and direction of the winch drive enables it to accommodate different load characteristics and operational needs. This flexibility makes winch drives suitable for a variety of applications, including construction, manufacturing, marine, entertainment, and transportation industries.

  • Variable Speed and Control:

Winch drives provide variable speed control, allowing mechanical systems to adapt to different operating conditions and tasks. The speed of the winch drive can be adjusted to match the specific requirements of the application, whether it involves slow and precise movements or fast and efficient operations. Additionally, winch drives offer precise control over acceleration, deceleration, and stopping, enabling smooth and controlled movements. This variable speed and control capability enhance the adaptability and versatility of mechanical systems in handling diverse tasks and operating in different environments.

  • Multiple Mounting Options:

Winch drives are available in various configurations and mounting options, offering flexibility in installation and integration into different mechanical systems. They can be mounted horizontally, vertically, or at custom angles, depending on the specific requirements of the application. This versatility in mounting options allows winch drives to be easily incorporated into existing systems or adapted to fit space constraints in different settings. Whether it’s a stationary installation, mobile equipment, or overhead lifting system, winch drives can be positioned and mounted in a way that optimizes their functionality and adaptability.

  • Integration with Control Systems:

Winch drives can be integrated with control systems, automation technologies, and other mechanical components, enhancing the adaptability and versatility of the overall system. They can be connected to programmable logic controllers (PLCs), human-machine interfaces (HMIs), or central control systems, enabling seamless integration and coordination with other equipment and processes. This integration allows for synchronized operations, centralized control, and automation of complex tasks, making the mechanical system more adaptable to changing requirements and versatile in different settings.

  • Modularity and Scalability:

Winch drives often have modular designs, which facilitate easy customization, expansion, and scalability of mechanical systems. Additional winch drives can be added or existing ones can be reconfigured to accommodate changing load capacities or operational needs. This modularity allows mechanical systems to adapt to evolving requirements without significant redesign or replacement of the entire system. It provides the flexibility to scale up or down the capabilities of the system, making it versatile and adaptable to different settings and applications.

In summary, winch drives contribute to the adaptability and versatility of mechanical systems through their flexible load handling capabilities, variable speed and control, multiple mounting options, integration with control systems, and modularity. By incorporating winch drives, mechanical systems can adapt to different tasks, environments, and operational demands, making them versatile and suitable for a wide range of settings and applications.

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

In what industries or scenarios are winch drives commonly employed?

Winch drives find extensive utilization in various industries and scenarios that require controlled pulling or lifting capabilities. Their versatility and reliability make them valuable tools in a wide range of applications. Here’s a detailed explanation of the industries and scenarios where winch drives are commonly employed:

  • Off-Road and Automotive:

Winch drives are widely utilized in off-road vehicles, such as trucks, SUVs, and ATVs, for recovery purposes. They are essential in scenarios where vehicles get stuck or need to be pulled out of challenging terrain. Winch drives mounted on the front or rear bumpers of off-road vehicles provide the necessary pulling power to extricate vehicles from mud, sand, or other obstacles. In the automotive industry, winch drives are also employed in car haulers and trailers for loading and unloading vehicles, as well as in automotive repair and maintenance for tasks like engine removal and frame straightening.

  • Marine and Boating:

Winch drives play a crucial role in the marine and boating industry. They are commonly used for anchoring, mooring, and handling heavy loads. Sailboats and powerboats utilize winches to control the sails, raise and lower the anchor, and assist in docking. Larger vessels and ships employ winch drives for cargo handling, launching and recovering small boats or life rafts, and handling equipment on deck. Winch drives in the marine industry offer precise and controlled pulling or lifting capabilities in demanding maritime environments.

  • Construction and Industrial:

The construction and industrial sectors heavily rely on winch drives for various tasks requiring the movement of heavy materials and equipment. Winches are commonly used in cranes, hoists, and lifting systems for raising and lowering loads, positioning materials, and erecting structures. They are also found in material handling equipment, such as forklifts and telehandlers, to assist in loading and unloading operations. Winch drives are invaluable in construction sites for activities like tensioning cables, pulling machinery, and operating temporary lifts. Their robustness and reliability make them indispensable tools in the construction and industrial industries.

  • Recreational and Adventure:

Winch drives are utilized in various recreational and adventure scenarios to provide controlled movement and enhance safety. In amusement parks and adventure facilities, winches are often used in zip line systems, enabling participants to traverse from one point to another safely. They are also employed in aerial lifts and chairlifts for ski resorts and mountainous areas. Winch drives provide the necessary pulling power and controlled speed, 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.

  • Oil and Gas:

In the oil and gas industry, winch drives are commonly employed in various operations. They are used for tasks such as wireline operations, well intervention, and the handling of heavy equipment. Winch drives assist in lowering and raising tools and instruments into wellbores, as well as in the deployment and retrieval of subsea equipment and structures. They provide the necessary pulling power and control to perform critical operations in the oil and gas exploration and production processes.

These are just a few examples of the industries and scenarios where winch drives are commonly employed. Their versatility, strength, and controllability make them valuable tools in numerous applications, ranging from off-road and automotive to marine and boating, construction and industrial, recreational and adventure, and oil and gas industries.

China best High Quality Worm Gearbox Speed Reducer (FCNDK) for Sand Muller  China best High Quality Worm Gearbox Speed Reducer (FCNDK) for Sand Muller
editor by Dream 2024-05-07

China wholesaler High Torque Nmrv Worm Gear AC Motor Electric Low Speed Worm Gearbox Motor Reducer

Product Description

There are many types of worm gearboxes. If you have any questions about the selection, please contact us first.

Band name

CHINAMFG

Model No.:

NMRV571, NMRV030, NMRV040, NMRV050, NMRV063, NMRV075, NMRV090, NMRV110, NMRV130, NMRV150

Ratio:

5,7.5,10,15,20,25,30,40,50,

Color:

Blue/Silver Grey Or On Customer Request

Material:

Housing: Size 25-110 Is Aluminum Alloy, Size 110-150 Is Cast-Iron

Worm Wheel: ZCuSn10Pb1

Worm:20Cr

Pinion:Tin Bronze

Output Shaft: Steel-45#

Matching motor

40~750W

Usages:

Industrial Machine: Food Stuff, Ceramics, Chemical, Packing, Dyeing,Wood working, Glass.

IEC Flange:

IEC Standard Flange Or On Customer Request

PRODUCTS CHARACTERISTICS
1. Mad of high-quality aluminum alloy,light weight and non-rusting
2. Large output torque
3. Smooth in running and low in noise,can work long time in dreadful conditions.
4. High in radiating efficiency.
5. Good-looking in appearance,durable in service life and small in volume.
6. Suitable for omnibearing installation.

 

FAQ
Q1:Are you a manufacturer or trading company?
 Yes, We are a leading manufacturer specialized in production of various kinds of small and medium-sized
 motor.

Q2:How to choose a gearbox which meets our requirement?
You can refer to our catalogue to choose the gearbox or we can help to choose when you provide
the technical information of required output torque, output speed and motor parameter etc.

Q3:What information shall we give before placing a purchase order?
a) Type of the gearbox, ratio, input and output type, input flange, mounting position, and motor information etc.
b) Housing color.
c) Purchase quantity.
d) Other special requirements.

Q4:What industries are your gearboxes being used?
Our gearboxes are widely used in the areas of textile, food processing, beverage, chemical industry, escalator,automatic storage equipment, metallurgy, tabacco, environmental protection, logistics and etc.

Q5:How about your delivery time?
For micro brush dc gear motor, the sample delivery time is 2-5 days, bulk delivery time is about 15-20 days, depends on the order qty. For brushless dc motor, the sample deliver time is about 10-15 days; bulk time is 15-20 days.Please take the sales confirmation for final reference.

Q6:What’s your warranty terms?
One year

  /* 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: Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Installation: 90 Degree
Layout: Coaxial
Gear Shape: Cylindrical Gear
Step: Double-Step
Samples:
US$ 90/Piece
1 Piece(Min.Order)

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Customization:
Available

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winch drive

How do electronic or computer-controlled components integrate with winch drives in modern applications?

In modern applications, electronic or computer-controlled components play a crucial role in enhancing the functionality, precision, and safety of winch drives. These components integrate with winch drives to provide advanced control, monitoring, and automation capabilities. Here’s a detailed explanation of how electronic or computer-controlled components integrate with winch drives in modern applications:

  • Control Systems:

Electronic or computer-controlled components are used to create sophisticated control systems for winch drives. These control systems allow operators to precisely control the speed, direction, and position of the winch drive. By integrating sensors, actuators, and feedback mechanisms, the control system can monitor the operating conditions and adjust parameters in real-time to optimize performance. Control systems may include programmable logic controllers (PLCs), microcontrollers, or dedicated electronic control units (ECUs) that communicate with the winch drive to execute commands and maintain desired operating parameters.

  • Human-Machine Interfaces (HMIs):

Electronic components enable the integration of intuitive and user-friendly Human-Machine Interfaces (HMIs) with winch drives. HMIs provide a visual interface for operators to interact with the winch drive system. Touchscreen displays, buttons, switches, and graphical user interfaces (GUIs) allow operators to input commands, monitor system status, and access diagnostic information. HMIs also facilitate the adjustment of control parameters, alarm settings, and operational modes. The integration of HMIs enhances operator control and simplifies the operation of winch drives in modern applications.

  • Sensors and Feedback Systems:

Electronic sensors are employed to gather real-time data about various parameters related to the winch drive and the operating environment. These sensors can measure variables such as load weight, cable tension, speed, temperature, and motor current. The collected data is then fed back to the control system, allowing it to make informed decisions and adjustments. For example, if the load exceeds a predefined limit, the control system can send a signal to stop the winch drive or activate an alarm. Sensors and feedback systems ensure accurate monitoring of operating conditions and enable proactive control and safety measures.

  • Communication Protocols:

Electronic or computer-controlled components facilitate communication between winch drives and other devices or systems. Modern winch drives often support various communication protocols, such as Ethernet, CAN bus, Modbus, or Profibus, which enable seamless integration with higher-level control systems, supervisory systems, or industrial networks. This integration allows for centralized control, remote monitoring, and data exchange between the winch drive and other components or systems, enhancing coordination and automation in complex applications.

  • Automation and Programmability:

Electronic or computer-controlled components enable advanced automation and programmability features in winch drives. With the integration of programmable logic controllers (PLCs) or microcontrollers, winch drives can execute pre-programmed sequences of operations, follow specific load profiles, or respond to external commands and triggers. Automation reduces manual intervention, improves efficiency, and enables synchronized operation with other equipment or systems. Programmability allows customization and adaptation of winch drive behavior to meet specific application requirements.

  • Diagnostics and Condition Monitoring:

Electronic components enable comprehensive diagnostics and condition monitoring of winch drives. Built-in sensors, data logging capabilities, and advanced algorithms can monitor the health, performance, and operating parameters of the winch drive in real-time. This information can be used for predictive maintenance, early fault detection, and performance optimization. Additionally, remote access and network connectivity enable remote monitoring and troubleshooting, reducing downtime and improving maintenance efficiency.

In summary, electronic or computer-controlled components integrate with winch drives in modern applications to provide advanced control, monitoring, automation, and safety features. These components enable precise control, user-friendly interfaces, data-driven decision-making, communication with other systems, automation, and diagnostics. The integration of electronic components enhances the functionality, efficiency, and reliability of winch drives in a wide range of applications.

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.

China wholesaler High Torque Nmrv Worm Gear AC Motor Electric Low Speed Worm Gearbox Motor Reducer  China wholesaler High Torque Nmrv Worm Gear AC Motor Electric Low Speed Worm Gearbox Motor Reducer
editor by Dream 2024-05-03

China Standard CZPT Brand High Quality with Competitive Price Straight Planetary Gear Speed Reducer, Gearmotor, Gearboxes Coupled with ABB Hydraulic Motor efficiency of planetary gearbox

Product Description

Product Description
SGR planetary gear motor 
Technical data:
1. Ratio range: 8.1-191
2. Input power: 0.12-270 KW
3. Permit torque rang: ≤ 50000 N. M
4. Output speed: 0.3~205 r/min
5. Structure: Foot-mounted, flange-mounted, shaft-mounted

Input structure motor,IEC flange
Output speed solid shaft, hollow shaft with key,with shrink disk

Characteristic:
1. Adopt optimized design, module combination, right angle output, space reduction
2. High strength and longevity gears
3. Can be combined with various motors, wider ratio range
4. Big output torque, smoothly startup, high efficiency
Production pictures:

Packing Pictures :

Factory

———————————————————————————————————————————————
FAQ:

1.Are you a factory or trader ?
We are a professional factory which has 20 years history specialized in gear transmission .

2.MOQ:
Our MOQ is 1pcs. However there is 1 handling cost $150 for the single order which less than $3000.00

3. Warranty
Our warranty is 12months

4. Payment term
100% T/T in advance and LC at sight .

5. Do you accept customization ?
YES.SGR have strong R&D team, we can provide customizable service according to requirements.

6. Packing
Generally we use standard export plywood case to arrange the shipment .

7. Delivery time
In normal ,time of delivery is 30days after receiving the prepayment .

8. What kinds of certification do you use ?
DNV-ISO9001:2008, SGS,CE etc, And new products patent.

9. What kinds of inspection you do before shipment ?
We do temperature test, noise, and oil leak inspection and commissioning before shipment.

10.How do you solve if the production have problem ?
Mostly, we don’t need customer send the goods back to us. Because the cost is very high, if there meets a problem,we firstly ask for the pictures for damaged parts. And base on the pictures, we can have a basic idea for the defect reason. Our guarantee is 12 months, if during the guarantee, we can supply repair .  
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Application: Motor, Machinery
Function: Distribution Power, Change Drive Torque, Speed Reduction
Layout: Coaxial
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Step: Single-Step
Samples:
US$ 200/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

Customized Request

planetarygearbox

What is a Planetary Gearbox?

A planetary gearbox is a mechanical device in which the teeth of a planet mesh with the teeth of its sun or ring. The number of teeth and the spacing of planets will determine whether the teeth mesh correctly. In this article, we will learn more about planetary gearboxes. Besides understanding their working, you can also learn how to design your own. Here are some examples:

planetary gearboxes

If your car has an automatic transmission, then a planetary gearbox is the type you have. It is possible to find out if you have this type of gearbox by consulting the owner’s manual, calling the service department of your car’s manufacturer, or conducting a search using your favorite search engine. However, planetary gears are more complex and have many more components than standard gearboxes. The following information will explain more about this type of gearbox.
Planetary gearboxes use three different gear types to transmit torque. The sun gear sits in the center of the gear assembly, while the other gears rotate around it. A carrier connects the two gears, and is designed to set the spacing between them. When the gears are rotated, the carrier will spin, enabling the entire assembly to work together. The carrier also incorporates the output shaft. For this gearbox to work effectively, it must meet the application’s requirements.
There are three main types of planetary gearboxes: the basic model is highly efficient and transmits 97% of the power input. The earliest models are not complex, but they do have some key differences. Some of these differences make them ideal for various applications. For example, a planetary gearbox can operate in alternating and continuous operation, with the output support having internal grooving. Some designs have more than one output shaft, allowing the user to choose the configuration and torque that is best for their application.
One of the main differences between a planetary gearbox and a conventional one is the way the planetary parts move. A planetary gearbox may have multiple axes for increased torque. A planetary gearbox can provide a torque up to 113,000 N.m. by rotating its maximum teeth simultaneously. They are the ideal choice for space-constrained applications. For instance, a car with small spaces can install one with ease.
A planetary gearbox’s gear ratio is determined by the ratio of the sun gear to the ring gear. The number of teeth on the sun gear is a way to adjust the gear ratio. Smaller sun gears result in larger planetary gear ratios, while larger ones cause a decrease in torque. The ratio between planetary gears ranges from 3:1 to 10:1, with the lowest ratio being three. The greatest possible ratio is 10:1.
A planetary gearbox has many benefits. The compact design makes them a more efficient choice for small motors and is advantageous for servo functions. Planetary gearboxes have low inertia, which is an important factor, especially in servo applications, since the inertia of the gearbox adds to the motor’s load inertia. The planetary gearboxes are typically lubricated with grease or oil, so you don’t need to worry about re-lubrication or maintenance.

planetary gearboxes with output shaft

The advantages of planetary gearboxes are numerous. They are widely used in many applications, from automobiles to medical equipment, goods & personnel lifts to machine tools. They are also used in derrick & dockyard cranes and slewing drives. These gearboxes are available in various sizes and shapes, ranging from small to extremely large. There are many different types, and each is designed to suit its intended use.
The LP generation 3 gearhead series combines maximum quality with economic precision in a low-backlash planetary gearbox. The output shaft version is especially suited for high-speed, highly dynamic cyclic operation. Another version is the SP+ HIGH SPEED. The SP+ high-speed version is designed to achieve maximum speeds while in continuous operation. If you need a planetary gearbox with an output shaft, look no further. It is the best choice for many applications.
As the name suggests, a planetary gearbox incorporates planetary parts and an output shaft. The outer gears (also called the planetary gears) are connected by a carrier to the output shaft. The carrier is then connected to the output shaft by a ring. There are two or more planetary gears inside the planetary gearbox. Each gear is connected to a carrier, which is connected to the output shaft.
An epicyclic planetary gear train can be assembled so that the planet gear rolls around the sun gear. In the wheel drive planetary gearbox, the planetary gears are grouped over the housing to optimize the size and weight of the system. The planetary gear train can handle torques as high as 332,000 N.m., with the ring gear being fixed while the sun gear is movable.
Another advantage of a planetary gearbox is that it uses many teeth at once. This allows for high speed reduction and high torque transmission, and it is extremely compact. Planetary gearboxes with output shaft are ideal for space-constrained applications. Their compact size and minimal weight make them a popular choice in many industries. They are also known as epicyclic gears and are used in many different types of machines.
A planetary gearbox can have three components. A central sun gear, an outer ring known as the inner gear, and an output shaft. These three components are linked by a carrier. The carrier rotates so that the input and output gears are in sync. They also have a standard gap between the gears. The carrier also acts as the output shaft. They can be used to create small machines, such as a bicycle acceleration hub.
planetarygearbox

planetary gearboxes with integer number of teeth

When designing a planetary gearbox, one must determine the amount of tooth count. This figure is known as the mesh load factor Kg, and is based on the normal tooth forces that are generated in each mesh. The number of planets, the error in the gear design, and the rigidity of the housing all affect Kg. Depending on the type of application, Kg can be calculated by using different standards.
In a typical planetary gearbox, the ratio is an integer number, and the lowest is 3:1. At a ratio of 10, the sun gear is too large and the sun wheel is too low to provide a sufficient amount of torque. In most cases, the ratio is an integer value, and the teeth are evenly spaced. The gear mesh is then balanced to grade 2. The carrier is measured three-dimensionally to detect the accuracy of the planet pin hole in the carrier.
In the simplest case, each planetary gear mesh produces a dynamic signal at its mesh frequency. These signals can cancel or reinforce in various ways. A helix angle, however, introduces axial forces into the gear mesh, which can be cancelled or reinforced in the same way as torques. As the helix angle is an integer number, this planetary gear model does not necessarily require infinite precision.
The resulting motion period is measured in rotational angles. This figure can be used to determine fault diagnosis and calculate the minimum data length required. It can also be used to calculate the kinematic motion of a faulty planet gear tooth. It is important to note that fault-mesh motion is not instantaneous, and therefore, it requires a sufficient amount of time to fully mesh a faulty planet gear.
The load-share factor is similar to that of spur and helical gearboxes, and can be used to calculate dynamic load sharing. When the load share factor is low, the individual gear meshes are slightly loaded. Deflections can vary, especially with high-precision gears. Therefore, the design process should incorporate the tolerance chain. This will ensure the correct ratio of gear mesh.
A planetary gearbox is a type of planetary gear system that is used in motors. It has a sun gear at the center and a set of outer gears. Each gear turns according to its axis around the sun. They are interconnected by a ring component and are connected to each other through a carrier. The carrier also includes the output shaft. And since the sun gear is centered, the mesh is standard.
As an added benefit, planetary gearboxes have sliding surfaces, which reduce noise and vibration. Despite the high-quality of planetary gearboxes, it is important to properly lubricate them to avoid wear and tear. CZPT uses CZPT. In order to make the planetary gearboxes last a long time, the lubricant is usually incorporated in the planetary gearbox.

China Standard CZPT Brand High Quality with Competitive Price Straight Planetary Gear Speed Reducer, Gearmotor, Gearboxes Coupled with ABB Hydraulic Motor   efficiency of planetary gearboxChina Standard CZPT Brand High Quality with Competitive Price Straight Planetary Gear Speed Reducer, Gearmotor, Gearboxes Coupled with ABB Hydraulic Motor   efficiency of planetary gearbox
editor by Dream 2024-04-23

China high quality High Performance Gearbox 1: 30 Gearbox Worm Gear Speed Reducer

Product Description

High Performance Gearbox 1:30 gearbox worm gear speed reducer 

Product Description

NMRV 571-150 worm gear box with flange and electric motor
NMRV+NMRV Double Stage Arrangement Reduction Gear Box
RV Series Worm Gearbox
worm speed reducer
nmrv worm gear motor

Detailed Photos

RV Series
Including RV / NMRV / NRV.
Main Characteristic of RV Series Worm Gearbox
RV series worm gear reducer is a new-generation product developed by CHINAMFG on the basis of perfecting WJ series products with a compromise of advanced technology both at home and abroad.
1. High-quality aluminum alloy, light in weight and non-rusting.
2. Large in output torque.
3. Smooth running and low noise,durable in dreadful conditions.
4. High radiation efficiency.
5. Good-looking appearance, durable in service life and small volume.
6. Suitable for omnibearing installation.
Main Materials of RV Series Worm Gearbox
1. Housing: die-cast aluminum alloy(frame size: 571 to 090), cast iron(frame size: 110 to 150).
2. Worm: 20Crm, carbonization quencher heat treatment makes the surface hardness of worm gears up to 56-62 HRX, retain carbonization layer’s thickness between 0.3 and 0.5mm after precise grinding.
3. Worm Wheel: wearable stannum bronze alloy.

SPEED RATIO 7.5~100
OUTPUT TORQUE <1050NM
IN POWER 0.09-11KW
MOUNTING TYPE FOOT-MOUNTED FLANGE-MOUNTED

Product Parameters

When working, great load capacity, stable running, low noise with  high efficiency.
  Gear Box’s Usage Field
1 Metallurgy       11 Agitator  
2 Mine       12 Rotary weeder  
3 Machine       13 Metallurgy   
4 Energy       14 Compressor
5 Transmission     15 Petroleum industry
6 Water Conserbancy     16 Air Compressor
7 Tomacco       17 Crusher  
8 Medical       18 Materials
9 Packing     19 Electronics  
10 Chemical industry     20 Textile indutry
           
Power 0.06kw 0.09kw 0.12kw 0.18kw 0.25kw 0.37kw 0.55kw
0.75kw 1.1kw 1.5kw 2.2kw 3kw 4kw 5.5kw
7.5kw 11kw 15kw        
Torque 2.6N.m-3000N.m
Ratio 7.5-100, the double gearbox is  more
Color Blue, Silver or as customers’ need
Material Iron or Aluminium
Packing Carton with Plywood  Case or as clients’ requirement
Type RV571 RV030 RV040 RV050 RV063 RV075 RV090
Weight 0.7kg 1.3kg 2.3kg 3.5kg 6.2kg 9kg 13kg
Type RV110 RV130 RV150        
Weight 35kg 60kg 84kg        

Certifications

Packaging & Shipping

Company Profile

Our Advantages

FAQ

/* 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: Motor, Machinery
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Worm
Gear Shape: Worm
Step: Single-Step
Customization:
Available

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winch drive

How do winch drives contribute to the adaptability and versatility of mechanical systems in various settings?

Winch drives play a significant role in enhancing the adaptability and versatility of mechanical systems in various settings. Here’s a detailed explanation of how winch drives contribute to adaptability and versatility:

  • Flexible Load Handling:

Winch drives offer flexibility in load handling, allowing mechanical systems to adapt to different requirements. They can handle a wide range of loads, from light to heavy, and provide precise control over the lifting, lowering, and positioning of loads. The ability to adjust the speed, torque, and direction of the winch drive enables it to accommodate different load characteristics and operational needs. This flexibility makes winch drives suitable for a variety of applications, including construction, manufacturing, marine, entertainment, and transportation industries.

  • Variable Speed and Control:

Winch drives provide variable speed control, allowing mechanical systems to adapt to different operating conditions and tasks. The speed of the winch drive can be adjusted to match the specific requirements of the application, whether it involves slow and precise movements or fast and efficient operations. Additionally, winch drives offer precise control over acceleration, deceleration, and stopping, enabling smooth and controlled movements. This variable speed and control capability enhance the adaptability and versatility of mechanical systems in handling diverse tasks and operating in different environments.

  • Multiple Mounting Options:

Winch drives are available in various configurations and mounting options, offering flexibility in installation and integration into different mechanical systems. They can be mounted horizontally, vertically, or at custom angles, depending on the specific requirements of the application. This versatility in mounting options allows winch drives to be easily incorporated into existing systems or adapted to fit space constraints in different settings. Whether it’s a stationary installation, mobile equipment, or overhead lifting system, winch drives can be positioned and mounted in a way that optimizes their functionality and adaptability.

  • Integration with Control Systems:

Winch drives can be integrated with control systems, automation technologies, and other mechanical components, enhancing the adaptability and versatility of the overall system. They can be connected to programmable logic controllers (PLCs), human-machine interfaces (HMIs), or central control systems, enabling seamless integration and coordination with other equipment and processes. This integration allows for synchronized operations, centralized control, and automation of complex tasks, making the mechanical system more adaptable to changing requirements and versatile in different settings.

  • Modularity and Scalability:

Winch drives often have modular designs, which facilitate easy customization, expansion, and scalability of mechanical systems. Additional winch drives can be added or existing ones can be reconfigured to accommodate changing load capacities or operational needs. This modularity allows mechanical systems to adapt to evolving requirements without significant redesign or replacement of the entire system. It provides the flexibility to scale up or down the capabilities of the system, making it versatile and adaptable to different settings and applications.

In summary, winch drives contribute to the adaptability and versatility of mechanical systems through their flexible load handling capabilities, variable speed and control, multiple mounting options, integration with control systems, and modularity. By incorporating winch drives, mechanical systems can adapt to different tasks, environments, and operational demands, making them versatile and suitable for a wide range of settings and applications.

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

How does the design of a winch drive contribute to efficient load lifting and pulling?

The design of a winch drive plays a critical role in ensuring efficient load lifting and pulling operations. Various design considerations are implemented to optimize performance, reliability, and safety. Here’s a detailed explanation of how the design of a winch drive contributes to efficient load lifting and pulling:

  • Power and Torque:

A well-designed winch drive is equipped with a power source and gearbox that provide sufficient power and torque to handle the intended load. The power source, whether it’s an electric motor or hydraulic system, should have adequate capacity to generate the required energy for the pulling or lifting operation. The gearbox or transmission is designed to provide the appropriate torque output, matching the load requirements. By ensuring the winch drive has the necessary power and torque, it can efficiently handle the load without straining the components or compromising performance.

  • Gearing and Speed Control:

The gearing system within the winch drive allows for precise control over the speed of the pulling or lifting operation. The gearbox is designed with different gear ratios, enabling the operator to select the desired speed based on the specific requirements of the task. This capability is crucial for efficient load handling. For instance, a higher gear ratio can be used for lighter loads or faster pulling speeds, while a lower gear ratio provides increased pulling power for heavier loads. The ability to control the speed optimizes the efficiency of the winch drive by adapting to the load characteristics and operational needs.

  • Drum Size and Cable Capacity:

The design of the winch drive includes considerations for the drum size and cable capacity. The drum is responsible for winding or unwinding the cable during the pulling or lifting operation. A larger drum diameter allows for a greater length of cable to be wound, which increases the pulling capacity of the winch. The drum design should also ensure proper cable alignment and smooth winding to prevent cable damage or entanglement. By optimizing the drum size and cable capacity, the winch drive can efficiently handle the load and accommodate the necessary cable length required for the task.

  • Braking System:

An efficient winch drive incorporates a reliable braking system. The braking system is designed to hold the load securely when the winch is not actively pulling or lifting. It prevents the load from slipping or releasing unintentionally, ensuring safety and stability during operation. The braking system should engage quickly and provide sufficient holding force, even in the event of power loss or sudden load changes. A well-designed braking system contributes to the efficiency of load lifting and pulling by maintaining control and preventing accidents or damage.

  • Control System and Safety Features:

The design of the winch drive includes a control system with intuitive controls and safety features. The control system allows the operator to manage the operation of the winch drive, including start/stop functions, direction control, and speed adjustment. Clear and user-friendly controls enhance operational efficiency and facilitate precise load handling. Additionally, safety features such as overload protection, emergency stop mechanisms, and limit switches are integrated into the winch drive design to ensure safe operation and prevent damage to the equipment or injury to personnel.

By considering power and torque requirements, gearing and speed control, drum size and cable capacity, braking systems, control systems, and safety features, the design of a winch drive contributes to efficient load lifting and pulling. These design elements work together to optimize performance, control, and safety, allowing the winch drive to handle loads effectively and reliably in various applications and industries.

China high quality High Performance Gearbox 1: 30 Gearbox Worm Gear Speed Reducer  China high quality High Performance Gearbox 1: 30 Gearbox Worm Gear Speed Reducer
editor by Dream 2024-04-23

China OEM High Efficiency Hardened Tooth Helical Speed Gear Shaft out Planetary Reducer Gearbox planetary gearbox backdrive

Product Description

Product Description

High Efficiency hardened tooth helical speed gear shaft out Planetary reducer Gearbox

P Series Planetary Gearbox adopts the involute planetary gear transmission with inner mesh, outer mesh and divided power employed reasonably. So the series has the features of light weight, small volume, high transmission ratio, high efficiency, smooth rotation, low noise and good applicability.
Application:
P Series Planetary Gearbox is widely used in many industries such as metallurgy, mining, hoisting and transportation, electrical power, energy resources, construction and building materials, light industry and traffic, etc.

P series planetary gearbox with good prices
1.P Series Planetary Gear Units is designed according to the involute planetary gear transmission with inner mesh,outer mesh and divided power employed reasonably. 

2.P series planetary gear unit has the feature of light weight , small volume, high transmission ratio,  
high efficiency, smooth rotation, low noise and good applicability. 

3.P series is widely used in industries such as metallurgy,  mining,  hoisting and transportation, electrical power, energy resources, construction and building materials, light industry and traffic.

Detailed Photos

 4.Technical Data

Input power Ratio Torque Planetary gear units stage Mounting type
0.4~9551kW 25~4000 Up to 1920000N.m 2 stage
3 stage
Horizontal
Vertical

 
 
5.Basic Information
Gear Arrangement:Helical gear
Mounting Type: Horizontal, Vertical
Types: P2N,P2L,P2S,P2K,P3N,P3S,P3K
 

 6.Features

Features of Planetary gearbox Light weight
Small volume
High transmission ratio
High transmission efficiency
Smooth rotation
Good applicability

P series planetary gearbox with good prices
 
7.Explanation of types
P2N-2-stage planetary gear units:
P2L-Bevel,2-stage planetary gear units:
P2S-Helical,2-stage planetary gear units;
P2K-Bevel-helical,2-stage planetary gear units:
P3N-3-stage planetary gear units;
P3S-Helical,3-stage planetary gear units;
P3K-Bevel-helical,3-stage planetary gear units;
 

Product Parameters

Product description:

Rated Power 0.4KW~9551KW
Rated Torque Up to 1920KN.m
Gear Arrangement Planetary with helical or bevel gearbox
Input Speed 50HZ or 60HZ of 4Pole,6Pole and 8pole motor
Ratio i=25~4000
Installation Form Flange Mounted, Foot Mounted or Torque Arm Mounted

Certifications

 

Packaging & Shipping

Company Profile

Our Advantages

 

Pre-sale services 1. Select equipment model.
2.Design and manufacture products according to clients’ special requirement.
3.Train technical personal for clients
Services during selling 1.Pre-check and accept products ahead of delivery.
2. Help clients to draft solving plans.
After-sale services 1.Assist clients to prepare for the first construction scheme.
2. Train the first-line operators.
3.Take initiative to eliminate the trouble rapidly.
4. Provide technical exchanging.

FAQ

1.Q:What kinds of gearbox can you produce for us?
A:Main products of our company: UDL series speed variator,RV series worm gear reducer, ATA series shaft mounted gearbox, X,B series gear reducer,P series planetary gearbox and R, S, K, and F series helical-tooth reducer, more than 1 hundred models and thousands of specifications

2.Q:Can you make as per custom drawing?
A: Yes, we offer customized service for customers.
3.Q:What is your terms of payment ?
A: 30% Advance payment by T/T after signing the contract.70% before delivery
4.Q:What is your MOQ?
A: 1 Set

Welcome you contact me if you are interested in our product.
Our team will support any need you might have. /* 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, Agricultural Machinery, Industry
Function: Change Drive Torque, Speed Changing, Speed Reduction
Layout: Coaxial
Hardness: Hardened
Installation: Horizontal Type
Step: Double-Step
Customization:
Available

|

Customized Request

planetarygearbox

Types, Applications, and Lubrication of Planetary Gearboxes

A Planetary Gearbox is a device that can be used in a variety of applications. Their reduction ratios depend on the number of teeth in each gear. In this article, we will discuss the types, applications, and lubrication of planetary gearboxes. Hopefully, this article will be of help to you. If not, you can check out this article and discover more about this fascinating machine. There are many different types of planetary gearboxes.

Applications of planetary gearboxes

The planetary gearbox is a popular option for applications requiring precise positioning. Applications of the planetary gearbox range from plastic machinery to agricultural equipment, from goods & personnel lifts to industrial robotics. Some of the industries that benefit from this type of gearbox include robotics, intra-logistics, robotics for industrial automation, and medical equipment. Increasing automation is also fueling the growth of the industrial planetary gearbox market in APAC.
The compact design of planetary gears makes them excellent for reducing load inertia and maximizing torque. However, some applications require additional lubrication for sustained performance or high speeds. CZPT uses CZPT in its planetary gearboxes. In addition, lubrication prevents gear wear and minimizes noise and vibration. The planetary gearbox is also easy to install, thanks to its low-mass-inertia design.
Another application of the planetary gearbox is in axles and transfer cases. The planetary gear architecture consists of a sun gear, also called the central gear, and a ring-gear with internal teeth that are concentric to the sun gear. The two gears are connected via a carrier, and the output shaft is positioned on the ring-gear carrier. The gearbox can be configured in a variety of ways, depending on the speed-ratio requirements.
The planetary gear train is similar to that of a solar system. It comprises a sun gear and two or more outer gears, ring gear and carrier assembly. In this configuration, the outer gears are connected via a carrier and a ring gear. The planet gears are in constant mesh with each other, and power applied to one of these members will rotate the whole assembly. They are a very efficient choice for many applications.

Types

There are three types of planetary gearboxes, depending on their performance and efficiency. The basic model is highly efficient and transmits up to 97% of power input. Depending on the speed and torque that need to be transmitted, planetary gearboxes are used in many different applications. A planetary gearbox can reduce the speed of a roller or produce a more precise level of movement. Using a planetary gearbox for your printing press, for example, will maximize your gear transmission ratio.
This market research report analyzes the factors influencing the market for Planetary Gearboxes, as well as their sales and revenues. It also highlights industry trends and details the competitive landscape. It also provides a comprehensive analysis of the Planetary Gearbox industry and its drivers and restraints. It provides detailed information on the market size and future growth prospects. The study also includes an extensive discussion of the competitive landscape, identifying the top companies and key market players.
A planetary gearbox is often used to manufacture complicated machines. These gears are usually made of high-quality steel, which makes them extremely durable. Planetary gearboxes can also be used in the production of heavy machine elements. There are many benefits of a planetary gearbox, including its compactness and low mass inertia. The main advantage of a planetary gearbox is its ability to distribute torque. Compared to a normal gearbox, planetary gearboxes can provide torque that is nearly three times higher than its conventional counterpart.
The three main types of planetary gears are the single-stage, compound, and multi-stage. The general concept of a planetary gear is referred to as a compound planetary gear. This means that planetary gears are made up of one of these three basic structures: a meshed-planet structure, a shaft, and a multi-stage structure. This type of gear has multiple stages and is particularly useful for fast-dynamic laser cutting machines.
planetarygearbox

Design

A planetary gearbox is similar to a car’s transmission. All of its gears must have a certain number of teeth and be spaced equally apart. The teeth of a planet must mesh with the gears of the ring and sun to be functional. The number of teeth needed will depend on the number of planets and their spacing. This equation is a good starting point for designing a gearbox.
The dynamic properties of planetary gears are investigated using a parametric model. The stiffness of the mesh changes as the number of gear tooth pairs in contact varies during the gear rotation. Small disturbances in design realizations cause nonlinear dynamics, which results in noise and vibrations in the gear transmission. A mathematical system describing this process is developed using the basic principles of analytical mechanics. This mathematical model can be used to optimize any planetary gear.
This analysis assumes that the sun gear and planet gears have the same design modulus, which is a fundamental requirement of any mechanical gear. In reality, the ratio of these two gears is 24/16 versus -3/2. This means that a planetary gearbox’s output torque is 41.1 times the input torque. Considering this factor, we can make an accurate estimate of the total torque. The planetary gears are mounted face-to-face and connected to an electric motor.
A planetary gear set has to have a certain number of teeth that are odd or even. One way to overcome this issue is to double the number of teeth on the sun gear and the annulus gear. This will also solve irregularities. Another way to design a planetary gear set is to use the appropriate diametral pitch and module. There are many planetary gear sets available on the market, so it pays to understand the differences.

Lubrication

Lubrication for Planetary Gearboxes is important for the smooth functioning of the gear. Planetary gears are subjected to high levels of friction and heat, so they require regular lubrication. The gear housing is designed to dissipate heat away from the gear, but heat can still enter the gear, which can result in a poor lubrication condition. The best lubrication solution is synthetic oil, and the gear should be refilled with a minimum of 30 percent oil.
When lubricating a planetary gearbox, it is important to note that hydraulic oil is not suitable for planetary gearboxes, which cost over $1500. Hydraulic oil does not have the same viscosity and behavior with temperature fluctuations, making it less effective. The planetary gearbox may also overheat if a hose is not provided for case draining. A case drain hose is essential to prevent this from happening, because hot oil can cause overheating of the gearbox and damage to the gears.
Oil delivery conduits are positioned between each pair of planet gears. Each oil delivery conduit directs fresh oil toward the sun gear and the planet gear. The oil then disperses and exits from the gear train with considerable tangential velocity. The oil is redirected into a collection channel (56). The preferred embodiment uses herringbone gears, which pump oil axially outward into the channels.
The best way to choose the right type of lubrication is to consider its viscosity. Too high a viscosity will prevent the lubricant from flowing properly, which will cause metal-to-metal contact. The oil must also be compatible with the gearbox temperature. A suitable viscosity will increase the efficiency of the gearbox and prevent downtime. A reliable gearbox will ultimately result in higher profits and fewer costs.
planetarygearbox

Applications

This report examines the Industrial Planetary Gearbox Market and its current trends. It identifies the pre and post-COVID-19 effects of the industry. It outlines the advantages and disadvantages of the industrial planetary gearbox market. The report also explains the diverse financing resources and business models of the market. It includes the key players in the industry. Hence, it is essential to read this report carefully.
The report includes analysis and forecasts of the global market for planetary gearbox. It includes the product introductions, key business factors, regional and type segments, and end-users. It covers the sales and revenue of the market for each application field. The report also includes the regional and country-level market data. It also focuses on the market share of the key companies operating in the industry. It covers the competitive scenario in the global planetary gearbox market.
Another popular application for planetary gearboxes is in the toy industry. It is possible to design toys that look stunning with planetary gear systems. In addition to toys, clock makers also benefit from the planetary arrangement. In addition to producing a good-looking clock, this gearbox can reduce inertia and improve its efficiency. The planetary gearbox is easy to maintain, which makes it a good choice for clock applications.
In addition to traditional gear reductions, planetary gears are also used for 3D printing. Their huge gear ratio makes 3D printing easier. Furthermore, planetary gears are used to drive stepper motors, which turn much faster and produce a desired output. There are numerous industrial uses for planetary gearboxes. This article has explored a few of the most common ones. And don’t forget to explore their uses.

China OEM High Efficiency Hardened Tooth Helical Speed Gear Shaft out Planetary Reducer Gearbox   planetary gearbox backdriveChina OEM High Efficiency Hardened Tooth Helical Speed Gear Shaft out Planetary Reducer Gearbox   planetary gearbox backdrive
editor by CX 2024-04-04

China factory Fad Series High Precision Stepper Motor Planetary Worm Gearbox Speed Reducer for Servo Motor

Product Description

Fad Series High Precision Stepper Motor Planetary Worm Gearbox Speed Reducer for Servo Motor

1. The wide and comprehensive range of N series for industrial applications
2. Low-speed shaft design: Cylindrical with key, splined, hollow with shrink disc or splined hollow shaft
3. Rigid and precise nodular cast iron casing
4. Low noise running, high manufacturing quality standard
5. High and reliable performance, load capacity and low-speed shaft bearing

 

Please click here for more types!
 

Application

 

Our factory

 

Related Products

 

For more reducers and mechanical accessories, please click here to view

 

 

 

/* 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: Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery, Car
Function: Distribution Power, Speed Changing, Speed Reduction
Layout: Wrom
Hardness: Hardened Tooth Surface
Installation: Planetary
Step: Planetary

winch drive

How do winch drives contribute to the adaptability and versatility of mechanical systems in various settings?

Winch drives play a significant role in enhancing the adaptability and versatility of mechanical systems in various settings. Here’s a detailed explanation of how winch drives contribute to adaptability and versatility:

  • Flexible Load Handling:

Winch drives offer flexibility in load handling, allowing mechanical systems to adapt to different requirements. They can handle a wide range of loads, from light to heavy, and provide precise control over the lifting, lowering, and positioning of loads. The ability to adjust the speed, torque, and direction of the winch drive enables it to accommodate different load characteristics and operational needs. This flexibility makes winch drives suitable for a variety of applications, including construction, manufacturing, marine, entertainment, and transportation industries.

  • Variable Speed and Control:

Winch drives provide variable speed control, allowing mechanical systems to adapt to different operating conditions and tasks. The speed of the winch drive can be adjusted to match the specific requirements of the application, whether it involves slow and precise movements or fast and efficient operations. Additionally, winch drives offer precise control over acceleration, deceleration, and stopping, enabling smooth and controlled movements. This variable speed and control capability enhance the adaptability and versatility of mechanical systems in handling diverse tasks and operating in different environments.

  • Multiple Mounting Options:

Winch drives are available in various configurations and mounting options, offering flexibility in installation and integration into different mechanical systems. They can be mounted horizontally, vertically, or at custom angles, depending on the specific requirements of the application. This versatility in mounting options allows winch drives to be easily incorporated into existing systems or adapted to fit space constraints in different settings. Whether it’s a stationary installation, mobile equipment, or overhead lifting system, winch drives can be positioned and mounted in a way that optimizes their functionality and adaptability.

  • Integration with Control Systems:

Winch drives can be integrated with control systems, automation technologies, and other mechanical components, enhancing the adaptability and versatility of the overall system. They can be connected to programmable logic controllers (PLCs), human-machine interfaces (HMIs), or central control systems, enabling seamless integration and coordination with other equipment and processes. This integration allows for synchronized operations, centralized control, and automation of complex tasks, making the mechanical system more adaptable to changing requirements and versatile in different settings.

  • Modularity and Scalability:

Winch drives often have modular designs, which facilitate easy customization, expansion, and scalability of mechanical systems. Additional winch drives can be added or existing ones can be reconfigured to accommodate changing load capacities or operational needs. This modularity allows mechanical systems to adapt to evolving requirements without significant redesign or replacement of the entire system. It provides the flexibility to scale up or down the capabilities of the system, making it versatile and adaptable to different settings and applications.

In summary, winch drives contribute to the adaptability and versatility of mechanical systems through their flexible load handling capabilities, variable speed and control, multiple mounting options, integration with control systems, and modularity. By incorporating winch drives, mechanical systems can adapt to different tasks, environments, and operational demands, making them versatile and suitable for a wide range of settings and applications.

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 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.

China factory Fad Series High Precision Stepper Motor Planetary Worm Gearbox Speed Reducer for Servo Motor  China factory Fad Series High Precision Stepper Motor Planetary Worm Gearbox Speed Reducer for Servo Motor
editor by CX 2024-03-23

China Standard Worm Reduction Gear Box Speed Reducer Jack Worm Agricultural Planetary Helical Bevel Worm Steering Gear Drive Motor High Speed Nmrv Gearbox Reducer Manufacture

Product Description

Worm Reduction Gear Box Speed Reducer Jack Worm Agricultural Planetary Helical Bevel Worm Steering Gear Drive Motor High Speed Nmrv Gearbox Reducer Manufacture

     

Application of Nmrv Gearbox

 

NMRV gearboxes are a type of worm gear reducer that is used in a wide variety of applications. They are characterized by their compact size, high efficiency, and low noise. NMRV gearboxes are typically used in applications where high torque and low speed are required, such as:

  • Conveyors: NMRV gearboxes are used in conveyors to transmit power from the motor to the conveyor belt. This allows the conveyor belt to move at a controlled speed and torque.
  • Machine tools: NMRV gearboxes are used in machine tools to transmit power from the motor to the cutting tool. This allows the cutting tool to operate at a high speed and torque, which is necessary for cutting through tough materials.
  • Wind turbines: NMRV gearboxes are used in wind turbines to transmit power from the blades to the generator. This allows the generator to generate electricity at a controlled speed and torque, which is necessary for providing power to homes and businesses.
  • Robotics: NMRV gearboxes are used in robotics to transmit power from the motor to the robot’s joints. This allows the robot to move its joints at a controlled speed and torque, which is necessary for performing tasks such as picking and placing objects.

NMRV gearboxes are a versatile type of gear reducer that can be used in a wide variety of applications. They offer a number of advantages that can help to improve safety, efficiency, and productivity.

Here are some of the advantages of using NMRV gearboxes:

  • Compact size: NMRV gearboxes are typically compact and lightweight, making them easy to install and maintain.
  • High efficiency: NMRV gearboxes are highly efficient, which can lead to a reduction in energy consumption and operating costs.
  • Low noise: NMRV gearboxes operate at a low noise level, which can make them ideal for use in noise-sensitive applications.
  • Durability: NMRV gearboxes are designed to be durable and can withstand harsh environments.

Overall, NMRV gearboxes are a valuable tool for a variety of applications. They offer a number of advantages that can help to improve safety, efficiency, and productivity.

      

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Application: Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car
Function: Distribution Power, Clutch, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction, Speed Increase
Layout: Coaxial
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Step: Steel
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

|

winch drive

How do winch drives contribute to the adaptability and versatility of mechanical systems in various settings?

Winch drives play a significant role in enhancing the adaptability and versatility of mechanical systems in various settings. Here’s a detailed explanation of how winch drives contribute to adaptability and versatility:

  • Flexible Load Handling:

Winch drives offer flexibility in load handling, allowing mechanical systems to adapt to different requirements. They can handle a wide range of loads, from light to heavy, and provide precise control over the lifting, lowering, and positioning of loads. The ability to adjust the speed, torque, and direction of the winch drive enables it to accommodate different load characteristics and operational needs. This flexibility makes winch drives suitable for a variety of applications, including construction, manufacturing, marine, entertainment, and transportation industries.

  • Variable Speed and Control:

Winch drives provide variable speed control, allowing mechanical systems to adapt to different operating conditions and tasks. The speed of the winch drive can be adjusted to match the specific requirements of the application, whether it involves slow and precise movements or fast and efficient operations. Additionally, winch drives offer precise control over acceleration, deceleration, and stopping, enabling smooth and controlled movements. This variable speed and control capability enhance the adaptability and versatility of mechanical systems in handling diverse tasks and operating in different environments.

  • Multiple Mounting Options:

Winch drives are available in various configurations and mounting options, offering flexibility in installation and integration into different mechanical systems. They can be mounted horizontally, vertically, or at custom angles, depending on the specific requirements of the application. This versatility in mounting options allows winch drives to be easily incorporated into existing systems or adapted to fit space constraints in different settings. Whether it’s a stationary installation, mobile equipment, or overhead lifting system, winch drives can be positioned and mounted in a way that optimizes their functionality and adaptability.

  • Integration with Control Systems:

Winch drives can be integrated with control systems, automation technologies, and other mechanical components, enhancing the adaptability and versatility of the overall system. They can be connected to programmable logic controllers (PLCs), human-machine interfaces (HMIs), or central control systems, enabling seamless integration and coordination with other equipment and processes. This integration allows for synchronized operations, centralized control, and automation of complex tasks, making the mechanical system more adaptable to changing requirements and versatile in different settings.

  • Modularity and Scalability:

Winch drives often have modular designs, which facilitate easy customization, expansion, and scalability of mechanical systems. Additional winch drives can be added or existing ones can be reconfigured to accommodate changing load capacities or operational needs. This modularity allows mechanical systems to adapt to evolving requirements without significant redesign or replacement of the entire system. It provides the flexibility to scale up or down the capabilities of the system, making it versatile and adaptable to different settings and applications.

In summary, winch drives contribute to the adaptability and versatility of mechanical systems through their flexible load handling capabilities, variable speed and control, multiple mounting options, integration with control systems, and modularity. By incorporating winch drives, mechanical systems can adapt to different tasks, environments, and operational demands, making them versatile and suitable for a wide range of settings and applications.

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

How does the design of a winch drive contribute to efficient load lifting and pulling?

The design of a winch drive plays a critical role in ensuring efficient load lifting and pulling operations. Various design considerations are implemented to optimize performance, reliability, and safety. Here’s a detailed explanation of how the design of a winch drive contributes to efficient load lifting and pulling:

  • Power and Torque:

A well-designed winch drive is equipped with a power source and gearbox that provide sufficient power and torque to handle the intended load. The power source, whether it’s an electric motor or hydraulic system, should have adequate capacity to generate the required energy for the pulling or lifting operation. The gearbox or transmission is designed to provide the appropriate torque output, matching the load requirements. By ensuring the winch drive has the necessary power and torque, it can efficiently handle the load without straining the components or compromising performance.

  • Gearing and Speed Control:

The gearing system within the winch drive allows for precise control over the speed of the pulling or lifting operation. The gearbox is designed with different gear ratios, enabling the operator to select the desired speed based on the specific requirements of the task. This capability is crucial for efficient load handling. For instance, a higher gear ratio can be used for lighter loads or faster pulling speeds, while a lower gear ratio provides increased pulling power for heavier loads. The ability to control the speed optimizes the efficiency of the winch drive by adapting to the load characteristics and operational needs.

  • Drum Size and Cable Capacity:

The design of the winch drive includes considerations for the drum size and cable capacity. The drum is responsible for winding or unwinding the cable during the pulling or lifting operation. A larger drum diameter allows for a greater length of cable to be wound, which increases the pulling capacity of the winch. The drum design should also ensure proper cable alignment and smooth winding to prevent cable damage or entanglement. By optimizing the drum size and cable capacity, the winch drive can efficiently handle the load and accommodate the necessary cable length required for the task.

  • Braking System:

An efficient winch drive incorporates a reliable braking system. The braking system is designed to hold the load securely when the winch is not actively pulling or lifting. It prevents the load from slipping or releasing unintentionally, ensuring safety and stability during operation. The braking system should engage quickly and provide sufficient holding force, even in the event of power loss or sudden load changes. A well-designed braking system contributes to the efficiency of load lifting and pulling by maintaining control and preventing accidents or damage.

  • Control System and Safety Features:

The design of the winch drive includes a control system with intuitive controls and safety features. The control system allows the operator to manage the operation of the winch drive, including start/stop functions, direction control, and speed adjustment. Clear and user-friendly controls enhance operational efficiency and facilitate precise load handling. Additionally, safety features such as overload protection, emergency stop mechanisms, and limit switches are integrated into the winch drive design to ensure safe operation and prevent damage to the equipment or injury to personnel.

By considering power and torque requirements, gearing and speed control, drum size and cable capacity, braking systems, control systems, and safety features, the design of a winch drive contributes to efficient load lifting and pulling. These design elements work together to optimize performance, control, and safety, allowing the winch drive to handle loads effectively and reliably in various applications and industries.

China Standard Worm Reduction Gear Box Speed Reducer Jack Worm Agricultural Planetary Helical Bevel Worm Steering Gear Drive Motor High Speed Nmrv Gearbox Reducer Manufacture  China Standard Worm Reduction Gear Box Speed Reducer Jack Worm Agricultural Planetary Helical Bevel Worm Steering Gear Drive Motor High Speed Nmrv Gearbox Reducer Manufacture
editor by CX 2024-03-04