Tag Archives: reducer

China Standard Hot Selling Ab Series Helical Gear Precision Planetary Reducer Speed Increase Gearbox with high quality

Product Description

 

Product name Precision Planetary Reducer
Model No. AB42-AB220
Layout form Planetary structure
Speed ratio 3-512
Output torque 20-1500N.M
Power 50W~30KW
Input speed 0~4000RPM
Output speed 0~1300RPM
Output type Shaft type
Installation  Flange mounting

 

Product Description

Precision planetary gear reducer is another name for planetary gear reducer in the industry. Its main transmission structure is planetary gear, sun gear and inner gear ring.

Compared with other gear reducers, precision planetary gear reducers have the characteristics of high rigidity, high precision (single stage can achieve less than 1 point), high transmission efficiency (single stage can achieve 97% – 98%), high torque/volume ratio, lifelong maintenance-free, etc. Most of them are installed on stepper motor and servo motor to reduce speed, improve torque and match inertia.

 

Company Profile

 

 

  /* 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

Hardness: Hardened Tooth Surface
Installation: Vertical Type
Layout: Coaxial
Gear Shape: Planetary
Step: Single-Step
Type: Gear Reducer
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|
Request Sample

planetary gearbox

Impact of Gear Tooth Design and Profile on the Efficiency of Planetary Gearboxes

The design and profile of gear teeth have a significant impact on the efficiency of planetary gearboxes:

  • Tooth Profile: The tooth profile, such as involute, cycloid, or modified profiles, affects the contact pattern and load distribution between gear teeth. An optimized profile minimizes stress concentration and ensures smooth meshing, contributing to higher efficiency.
  • Tooth Shape: The shape of gear teeth influences the amount of sliding and rolling motion during meshing. Gear teeth designed for more rolling and less sliding motion reduce friction and wear, enhancing overall efficiency.
  • Pressure Angle: The pressure angle at which gear teeth engage affects the force distribution and efficiency. Larger pressure angles can lead to higher efficiency due to improved load sharing, but they may require more space.
  • Tooth Thickness and Width: Optimized tooth thickness and width contribute to distributing the load more evenly across the gear face. Proper sizing reduces stress and increases efficiency.
  • Backlash: Backlash, the gap between meshing gear teeth, impacts efficiency by causing vibrations and energy losses. Properly controlled backlash minimizes these effects and improves efficiency.
  • Tooth Surface Finish: Smoother tooth surfaces reduce friction and wear. Proper surface finish, achieved through grinding or honing, enhances efficiency by reducing energy losses due to friction.
  • Material Selection: The choice of gear material influences wear, heat generation, and overall efficiency. Materials with good wear resistance and low friction coefficients contribute to higher efficiency.
  • Profile Modification: Profile modifications, such as tip and root relief, optimize tooth contact and reduce interference. These modifications minimize friction and increase efficiency.

In summary, the design and profile of gear teeth play a crucial role in determining the efficiency of planetary gearboxes. Optimal tooth profiles, shapes, pressure angles, thicknesses, widths, surface finishes, and material selections all contribute to reducing friction, wear, and energy losses, resulting in improved overall efficiency.

planetary gearbox

Differences Between Inline and Right-Angle Planetary Gearbox Configurations

Inline and right-angle planetary gearbox configurations are two common designs with distinct characteristics suited for various applications. Here’s a comparison of these configurations:

Inline Planetary Gearbox:

  • Configuration: In an inline configuration, the input and output shafts are aligned along the same axis. The sun gear, planetary gears, and ring gear are typically arranged in a straight line.
  • Compactness: Inline gearboxes are more compact and have a smaller footprint, making them suitable for applications with limited space.
  • Efficiency: Inline configurations tend to have slightly higher efficiency due to the direct alignment of components.
  • Output Speed and Torque: Inline gearboxes are better suited for applications that require higher output speeds and lower torque.
  • Applications: They are commonly used in robotics, conveyors, printing machines, and other applications where space is a consideration.

Right-Angle Planetary Gearbox:

  • Configuration: In a right-angle configuration, the input and output shafts are oriented at a 90-degree angle to each other. This allows for a change in direction of power transmission.
  • Space Flexibility: Right-angle gearboxes offer flexibility in arranging components, making them suitable for applications that require changes in direction or where space constraints prevent a straight-line configuration.
  • Torque Capacity: Right-angle configurations can handle higher torque loads due to the increased surface area of gear engagement.
  • Applications: They are often used in cranes, elevators, conveyor systems, and applications requiring a change in direction.
  • Efficiency: Right-angle configurations may have slightly lower efficiency due to increased gear meshing complexity and potential for additional losses.

Choosing between inline and right-angle configurations depends on factors such as available space, required torque and speed, and the need for changes in power transmission direction. Each configuration offers distinct advantages based on the specific needs of the application.

planetary gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

China Standard Hot Selling Ab Series Helical Gear Precision Planetary Reducer Speed Increase Gearbox   with high quality China Standard Hot Selling Ab Series Helical Gear Precision Planetary Reducer Speed Increase Gearbox   with high quality
editor by CX 2024-05-16

China manufacturer High Precision High Torque P Series Heavy Duty Planetary Gear Reducer Gearbox with OEM Custom P Series Planetary Gearbox gearbox design

Product Description

 

Product Name

Best price of P series planetary gearbox for concrete mixer

Series

gear reducer

Application

Power Tranmission

Bearing

China Top brand HRB,LYC,ZWZ or other brands requested, CZPT

Used

industry machinery

 

Product Description

 

1.P series planetary gear reducer is widely used in metallurgy , mining, lifting and transport , electricity, energy , building
materials, light industry, transportation and other industrial sectors.

2. P series planetary gear involute planetary gear transmission , within a reasonable use, external gear , power split .

3. The planetary gear modular design changes can be combined according to customer requirements.

4.Carburized gears are used to obtain high- hard wear-resistant surface , all the heat treatment after grinding gear teeth ,
reduce noise , improve the overall efficiency and service life.

5. Hight quality gear reducer , small transmission ratio range , high efficiency, smooth operation, low noise adaptability and
other characteristics .

Company Profile

Certifications

 

Packaging & Shipping

FAQ

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Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Coaxial
Gear Shape: Planetary
Step: Single-Step
Type: Gear Reducer
Samples:
US$ 100000/Piece
1 Piece(Min.Order)

|
Request Sample

planetary gearbox

Contribution of Planetary Gearboxes to Conveyor Belt Efficiency in Mining Operations

Planetary gearboxes play a crucial role in enhancing the efficiency and performance of conveyor belts in mining operations:

  • High Torque Transmission: Planetary gearboxes are capable of transmitting high torque with minimal backlash. This feature ensures that the gearbox efficiently handles the substantial load requirements of conveyor belts used in mining, preventing slippage and ensuring reliable material transportation.
  • Compact Design: The compact size of planetary gearboxes allows them to be integrated seamlessly into conveyor systems, optimizing space utilization and allowing for efficient equipment layout in mining environments.
  • Variable Speed Control: Planetary gearboxes provide precise speed control and can accommodate various speed requirements of conveyor belts. This versatility allows operators to adjust the conveyor speed to match specific material handling needs.
  • High Efficiency: The inherent design of planetary gearboxes minimizes energy losses due to efficient power transmission. This efficiency translates into reduced energy consumption and operational costs over the lifetime of the conveyor system.
  • Reliability and Durability: Planetary gearboxes are engineered to withstand demanding conditions often encountered in mining environments, including shock loads, abrasive materials, and harsh weather. Their robust construction ensures reliable operation and minimal downtime.
  • Low Maintenance: The durability of planetary gearboxes leads to reduced maintenance requirements. This benefit is particularly valuable in mining operations where minimizing downtime is essential for maintaining high productivity levels.
  • Customizability: Planetary gearboxes can be tailored to suit specific conveyor system requirements, including gear ratios, torque ratings, and mounting options. This flexibility allows for optimized system design and performance.

By effectively transmitting power, providing accurate speed control, and offering a compact and robust design, planetary gearboxes significantly enhance the efficiency and reliability of conveyor belts in mining operations. Their ability to handle high loads, operate with low maintenance needs, and withstand harsh conditions contributes to improved productivity and reduced operational costs.

planetary gearbox

Contribution of Planetary Gearboxes to Construction Machinery and Heavy Equipment

Planetary gearboxes play a crucial role in enhancing the proper functioning of construction machinery and heavy equipment. Here’s how they contribute:

High Torque Transmission: Construction machinery often requires high torque to handle heavy loads and perform tasks like digging, lifting, and material handling. Planetary gearboxes excel in transmitting high torque efficiently, allowing these machines to operate effectively even under demanding conditions.

Compact Design: Many construction and heavy equipment applications have limited space for gear mechanisms. Planetary gearboxes offer a compact design with a high power-to-weight ratio. This compactness allows manufacturers to integrate gearboxes into tight spaces without compromising performance.

Customizable Ratios: Different construction tasks require varying speeds and torque levels. Planetary gearboxes offer the advantage of customizable gear ratios, allowing equipment designers to tailor the gearbox to the specific needs of the application. This flexibility enhances the versatility of construction machinery.

Durability and Reliability: Construction sites are challenging environments with dust, debris, and extreme weather conditions. Planetary gearboxes are known for their durability and robustness, making them well-suited for heavy-duty applications. Their enclosed design protects internal components from contaminants and ensures reliable operation.

Efficient Power Distribution: Many construction machines are equipped with multiple functions that require power distribution among different components. Planetary gearboxes can be designed with multiple output shafts, enabling efficient distribution of power to various tasks while maintaining precise control.

Reduced Maintenance: The rugged construction and efficient power transmission of planetary gearboxes result in reduced wear and lower maintenance requirements. This is particularly beneficial in construction settings where downtime for maintenance can be costly.

Overall, planetary gearboxes contribute significantly to the proper functioning of construction machinery and heavy equipment by providing high torque, compactness, customization, durability, efficient power distribution, and reduced maintenance needs. Their capabilities enhance the performance and reliability of these machines in the demanding construction industry.

planetary gearbox

Factors to Consider When Selecting a Planetary Gearbox

Choosing the right planetary gearbox for a specific application involves considering various factors to ensure optimal performance and compatibility. Here are the key factors to keep in mind:

  • Load Requirements: Determine the torque and speed requirements of your application. Planetary gearboxes offer different torque and speed ratios, so selecting the appropriate gearbox with the right load capacity is crucial.
  • Ratio: Evaluate the gear reduction ratio needed to achieve the desired output speed and torque. Planetary gearboxes come in various gear ratios, allowing you to customize the output characteristics.
  • Efficiency: Consider the gearbox’s efficiency, as it affects energy consumption and heat generation. Higher efficiency gearboxes minimize power losses during transmission.
  • Size and Compactness: Planetary gearboxes are known for their compact size, but it’s essential to choose a size that fits within the available space while meeting performance requirements.
  • Mounting Configuration: Determine how the gearbox will be mounted in your application. Planetary gearboxes can have different mounting options, including flange, shaft, or foot mountings.
  • Input and Output Types: Select the appropriate input and output shaft configurations, such as male, female, keyed, splined, or hollow shafts, to ensure compatibility with your equipment.
  • Environment: Consider the operating environment, including temperature, humidity, dust, and potential exposure to chemicals. Choose a gearbox with appropriate seals and materials to withstand the conditions.
  • Accuracy: Some applications require precise motion control. If accuracy is essential, choose a gearbox with minimal backlash and high gear mesh quality.
  • Service Life and Reliability: Evaluate the gearbox’s expected service life and reliability based on the manufacturer’s specifications. Choose a reputable manufacturer known for producing reliable products.
  • Backlash: Backlash is the play between gears that can affect positioning accuracy. Depending on your application, you might need a gearbox with low backlash or a method to compensate for it.
  • Budget: Consider your budget constraints while balancing performance requirements. Sometimes, investing in a higher-quality gearbox upfront can lead to long-term cost savings through reduced maintenance and downtime.

By carefully considering these factors and consulting with gearbox manufacturers or experts, you can select a planetary gearbox that best meets the unique demands of your application.

China manufacturer High Precision High Torque P Series Heavy Duty Planetary Gear Reducer Gearbox with OEM Custom P Series Planetary Gearbox   gearbox design		China manufacturer High Precision High Torque P Series Heavy Duty Planetary Gear Reducer Gearbox with OEM Custom P Series Planetary Gearbox   gearbox design
editor by CX 2024-05-06

China Hot selling High Precision Planetary Speed Reducer 3000 Rpm Motor Planetary Gearbox bevel gearbox

Product Description

Planetary Gearbox AB Series Square Flange Helical Bevel Planetary Transmission Gearboxes Servo Motor

 
PLF series, PLE series, ZPLF series, ZPLE series, AB series, ABR series and many other models are available.

Product Description

Planetary Gearbox AB Series Square Flange Helical Bevel Planetary Transmission Gearboxes Servo Motor

Advantages of the planetary gearbox:

Low backlash

High Efficiency

High Torque

High Input Speed

High Stability

High Reduction Ratio

Detailed Photos

Product Parameters

Name

High Precision Planetary Gearbox

Model

AB042, AB060, AB060A, AB090A, AB115, AB142, AB180, AB220

Gearing Arrangement

Planetary

Effeiency withfull load

≥97

Backlash

≤5

Weight

0.5~48kg

Gear Type

Helical Gear

Gear stages

1 stage, 2 stage 

Rated Torque

14N.m-2000N.m

Gear Ratio One-stage

3, 4, 5, 6, 7, 8, 9, 10

Gear Ratio Two-stage

15, 20, 25, 30, 35, 40, 45, 50, 60, 70, 80, 90, 100

Mounting Position

Horizontal (foot mounted) or Vertical (flange mounted)

Usage

stepper motor, servo motor, AC motor, DC motor, etc

External Mounting Dimensions

1 stage reduction ratio 3~10

2 stage reduction ratio 15~100

Applications

Product Overview:

 

 Precision planetary gear reducer is another name for planetary gear reducer in the industry. Its main transmission structure is planetary gear, sun gear and inner gear ring.

Compared with other gear reducers, precision planetary gear reducers have the characteristics of high rigidity, high precision (single stage can achieve less than 1 point), high transmission efficiency (single stage can achieve 97% – 98%), high torque/volume ratio, lifelong maintenance-free, etc. Most of them are installed on stepper motor and servo motor to reduce speed, improve torque and match inertia.

 

/* 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

Hardness: Hardened Tooth Surface
Installation: Vertical Type
Layout: Coaxial
Gear Shape: Planetary
Step: Single-Step
Type: Ab Series Gearbox, Gear Reducer
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|
Request Sample

planetary gearbox

Impact of Gear Tooth Design and Profile on the Efficiency of Planetary Gearboxes

The design and profile of gear teeth have a significant impact on the efficiency of planetary gearboxes:

  • Tooth Profile: The tooth profile, such as involute, cycloid, or modified profiles, affects the contact pattern and load distribution between gear teeth. An optimized profile minimizes stress concentration and ensures smooth meshing, contributing to higher efficiency.
  • Tooth Shape: The shape of gear teeth influences the amount of sliding and rolling motion during meshing. Gear teeth designed for more rolling and less sliding motion reduce friction and wear, enhancing overall efficiency.
  • Pressure Angle: The pressure angle at which gear teeth engage affects the force distribution and efficiency. Larger pressure angles can lead to higher efficiency due to improved load sharing, but they may require more space.
  • Tooth Thickness and Width: Optimized tooth thickness and width contribute to distributing the load more evenly across the gear face. Proper sizing reduces stress and increases efficiency.
  • Backlash: Backlash, the gap between meshing gear teeth, impacts efficiency by causing vibrations and energy losses. Properly controlled backlash minimizes these effects and improves efficiency.
  • Tooth Surface Finish: Smoother tooth surfaces reduce friction and wear. Proper surface finish, achieved through grinding or honing, enhances efficiency by reducing energy losses due to friction.
  • Material Selection: The choice of gear material influences wear, heat generation, and overall efficiency. Materials with good wear resistance and low friction coefficients contribute to higher efficiency.
  • Profile Modification: Profile modifications, such as tip and root relief, optimize tooth contact and reduce interference. These modifications minimize friction and increase efficiency.

In summary, the design and profile of gear teeth play a crucial role in determining the efficiency of planetary gearboxes. Optimal tooth profiles, shapes, pressure angles, thicknesses, widths, surface finishes, and material selections all contribute to reducing friction, wear, and energy losses, resulting in improved overall efficiency.

planetary gearbox

Recent Advancements in Planetary Gearbox Technology

Advancements in planetary gearbox technology have led to improved performance, efficiency, and durability. Here are some notable developments:

High-Efficiency Gearing: Manufacturers are using advanced materials and precision manufacturing techniques to create gears with optimized tooth profiles. This reduces friction and enhances overall efficiency, resulting in higher power transmission with lower energy losses.

Enhanced Lubrication: Innovative lubrication systems and high-performance lubricants are being employed to ensure consistent and reliable lubrication even in extreme conditions. This helps to reduce wear and extend the lifespan of the gearbox.

Compact Designs: Engineers are focusing on designing more compact and lightweight planetary gearboxes without compromising their performance. This is particularly important for applications with limited space and weight constraints.

Integrated Sensors: Planetary gearboxes are now being equipped with sensors and monitoring systems that provide real-time data on temperature, vibration, and other operating parameters. This allows for predictive maintenance and early detection of potential issues.

Smart Gearboxes: Some modern planetary gearboxes are equipped with smart features such as remote monitoring, adaptive control, and data analysis. These features contribute to more efficient operation and better integration with automation systems.

Advanced Materials: The use of high-strength and wear-resistant materials, such as advanced alloys and composites, improves the durability and load-carrying capacity of planetary gearboxes. This is particularly beneficial for heavy-duty and high-torque applications.

Customization and Simulation: Advanced simulation and modeling tools enable engineers to design and optimize planetary gearboxes for specific applications. This customization helps achieve the desired performance and reliability levels.

Noise and Vibration Reduction: Innovations in gear design and manufacturing techniques have led to quieter and smoother-running planetary gearboxes, making them suitable for applications where noise and vibration are concerns.

Environmental Considerations: With growing environmental awareness, manufacturers are developing more eco-friendly lubricants and materials for planetary gearboxes, reducing their ecological footprint.

Overall, recent advancements in planetary gearbox technology are aimed at enhancing efficiency, durability, and versatility to meet the evolving demands of various industries and applications.

planetary gearbox

Impact of Gear Ratio on Output Speed and Torque in Planetary Gearboxes

The gear ratio of a planetary gearbox has a significant effect on both the output speed and torque of the system. The gear ratio is defined as the ratio of the number of teeth on the driven gear (output) to the number of teeth on the driving gear (input).

1. Output Speed: The gear ratio determines the relationship between the input and output speeds of the gearbox. A higher gear ratio (more teeth on the output gear) results in a lower output speed compared to the input speed. Conversely, a lower gear ratio (fewer teeth on the output gear) leads to a higher output speed relative to the input speed.

2. Output Torque: The gear ratio also affects the output torque of the gearbox. An increase in gear ratio amplifies the torque delivered at the output, making it higher than the input torque. Conversely, a decrease in gear ratio reduces the output torque relative to the input torque.

The relationship between gear ratio, output speed, and output torque is inversely proportional. This means that as the gear ratio increases and output speed decreases, the output torque proportionally increases. Conversely, as the gear ratio decreases and output speed increases, the output torque proportionally decreases.

It’s important to note that the gear ratio selection in a planetary gearbox involves trade-offs between output speed and torque. Engineers choose a gear ratio that aligns with the specific application’s requirements, considering factors such as desired speed, torque, and efficiency.

China Hot selling High Precision Planetary Speed Reducer 3000 Rpm Motor Planetary Gearbox   bevel gearbox	China Hot selling High Precision Planetary Speed Reducer 3000 Rpm Motor Planetary Gearbox   bevel gearbox
editor by CX 2024-05-06

China manufacturer CZPT Speed Reducer Gearbox Spare Parts Top P68/P70/P75s/P75r automatic gearbox

Product Description

 

Aftermarket Speed Reducer Gearbox Spare Parts Top P68 P70 P75S P75R for Mixer Truck

More products for concrete mixers
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Application: Excavator
Hardness: Torque Arm Type
Installation: Planetary Gear Box
Layout: Coaxial
Gear Shape: Cylindrical Gear
Step: Three-Step
Customization:
Available

|

Customized Request

planetary gearbox

Challenges in Achieving High Gear Ratios with Compactness in Planetary Gearboxes

Designing planetary gearboxes with high gear ratios while maintaining a compact form factor poses several challenges due to the intricate arrangement of gears and the need to balance various factors:

Space Constraints: Increasing the gear ratio typically requires adding more planetary stages, resulting in additional gears and components. However, limited available space can make it challenging to fit these additional components without compromising the compactness of the gearbox.

Efficiency: As the number of planetary stages increases to achieve higher gear ratios, there can be a trade-off in terms of efficiency. Additional gear meshings and friction losses can lead to decreased overall efficiency, impacting the gearbox’s performance.

Load Distribution: The distribution of loads across multiple stages becomes critical when designing high gear ratio planetary gearboxes. Proper load distribution ensures that each stage shares the load proportionally, preventing premature wear and ensuring reliable operation.

Bearing Arrangement: Accommodating multiple stages of planetary gears requires an effective bearing arrangement to support the rotating components. Improper bearing selection or arrangement can lead to increased friction, reduced efficiency, and potential failures.

Manufacturing Tolerances: Achieving high gear ratios demands tight manufacturing tolerances to ensure accurate gear tooth profiles and precise gear meshing. Any deviations can result in noise, vibration, and reduced performance.

Lubrication: Adequate lubrication becomes crucial in maintaining smooth operation and reducing friction as gear ratios increase. However, proper lubrication distribution across multiple stages can be challenging, impacting efficiency and longevity.

Noise and Vibration: The complexity of high gear ratio planetary gearboxes can lead to increased noise and vibration levels due to the higher number of gear meshing interactions. Managing noise and vibration becomes essential for ensuring acceptable performance and user comfort.

To address these challenges, engineers employ advanced design techniques, high-precision manufacturing processes, specialized materials, innovative bearing arrangements, and optimized lubrication strategies. Achieving the right balance between high gear ratios and compactness involves careful consideration of these factors to ensure the gearbox’s reliability, efficiency, and performance.

planetary gearbox

Advantages of Backlash Reduction Mechanisms in Planetary Gearboxes

Backlash reduction mechanisms in planetary gearboxes offer several advantages that contribute to improved performance and precision:

Improved Positioning Accuracy: Backlash, or the play between gear teeth, can lead to positioning errors in applications where precise movement is crucial. Reduction mechanisms help minimize or eliminate this play, resulting in more accurate positioning.

Better Reversal Characteristics: Backlash can cause a delay in reversing the direction of motion. With reduction mechanisms, the reversal is smoother and more immediate, making them suitable for applications requiring quick changes in direction.

Enhanced Efficiency: Backlash can lead to energy losses and reduced efficiency due to the impacts between gear teeth. Reduction mechanisms minimize these impacts, improving overall power transmission efficiency.

Reduced Noise and Vibration: Backlash can contribute to noise and vibration in gearboxes, affecting both the equipment and the surrounding environment. By reducing backlash, the noise and vibration levels are significantly decreased.

Better Wear Protection: Backlash can accelerate wear on gear teeth, leading to premature gearbox failure. Reduction mechanisms help distribute the load more evenly across the teeth, extending the lifespan of the gearbox.

Enhanced System Stability: In applications where stability is crucial, such as robotics and automation, backlash reduction mechanisms contribute to smoother operation and reduced oscillations.

Compatibility with Precision Applications: Industries such as aerospace, medical equipment, and optics require high precision. Backlash reduction mechanisms make planetary gearboxes suitable for these applications by ensuring accurate and reliable motion.

Increased Control and Performance: In applications where control is critical, such as CNC machines and robotics, reduction mechanisms provide better control over the motion and enable finer adjustments.

Minimized Error Accumulation: In systems with multiple gear stages, backlash can accumulate, leading to larger positioning errors. Reduction mechanisms help minimize this error accumulation, maintaining accuracy throughout the system.

Overall, incorporating backlash reduction mechanisms in planetary gearboxes leads to improved accuracy, efficiency, reliability, and performance, making them essential components in precision-driven industries.

planetary gearbox

Challenges and Solutions for Managing Power Transmission Efficiency in Planetary Gearboxes

Managing power transmission efficiency in planetary gearboxes is crucial to ensure optimal performance and minimize energy losses. Several challenges and solutions are involved in maintaining high efficiency:

1. Gear Meshing Efficiency: The interaction between gears can lead to energy losses due to friction and meshing misalignment. To address this, manufacturers use precision manufacturing techniques to ensure accurate gear meshing and reduce friction. High-quality materials and surface treatments are also employed to minimize wear and friction.

2. Lubrication: Proper lubrication is essential to reduce friction and wear between gear surfaces. Using high-quality lubricants with the appropriate viscosity and additives can enhance power transmission efficiency. Regular maintenance and monitoring of lubrication levels are vital to prevent efficiency losses.

3. Bearing Efficiency: Bearings support the rotating elements of the gearbox and can contribute to energy losses if not properly designed or maintained. Choosing high-quality bearings and ensuring proper alignment and lubrication can mitigate efficiency losses in this area.

4. Bearing Preload: Incorrect bearing preload can lead to increased friction and efficiency losses. Precision assembly and proper adjustment of bearing preload are necessary to optimize power transmission efficiency.

5. Mechanical Losses: Various mechanical losses, such as windage and churning losses, can occur in planetary gearboxes. Designing gearboxes with streamlined shapes and efficient ventilation systems can reduce these losses and enhance overall efficiency.

6. Material Selection: Choosing appropriate materials with high strength and minimal wear characteristics is essential for reducing power losses due to material deformation and wear. Advanced materials and surface coatings can be employed to enhance efficiency.

7. Noise and Vibration: Excessive noise and vibration can indicate energy losses in the form of mechanical inefficiencies. Proper design and precise manufacturing techniques can help minimize noise and vibration, indicating better power transmission efficiency.

8. Efficiency Monitoring: Regular efficiency monitoring through testing and analysis allows engineers to identify potential issues and optimize gearbox performance. This proactive approach ensures that any efficiency losses are promptly addressed.

By addressing these challenges through careful design, material selection, manufacturing techniques, lubrication, and maintenance, engineers can manage power transmission efficiency in planetary gearboxes and achieve high-performance power transmission systems.

China manufacturer CZPT Speed Reducer Gearbox Spare Parts Top P68/P70/P75s/P75r   automatic gearbox	China manufacturer CZPT Speed Reducer Gearbox Spare Parts Top P68/P70/P75s/P75r   automatic gearbox
editor by CX 2024-05-02

China Standard Speed Reducer Fvz97, Fhz97, FT97 Series Gearbox for Construction Machinery Spare Parts with high quality

Product Description

Product Description

Detailed Photos

Packaging & Shipping

Company Profile

Our Advantages

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LOYSEW KF39AM184
LOYSEW KAF39AM56
LOYSEW KAF39AM143
LOYSEW KAF39AM145
LOYSEW KAF39AM182
LOYSEW KAF39AM184
LOYSEW KA39AM56
LOYSEW KA39AM143
LOYSEW KA39AM145
LOYSEW KA39AM182
LOYSEW KA39AM184
LOYSEW KT39AM56
LOYSEW KT39AM143
LOYSEW KT39AM145
LOYSEW KT39AM182
LOYSEW KT39AM184
LOYSEW K47AM56
LOYSEW K47AM143
LOYSEW K47AM145
LOYSEW K47AM182
LOYSEW K47AM184
LOYSEW KA47BAM56
LOYSEW KA47BAM143
LOYSEW KA47BAM145
LOYSEW KA47BAM182
LOYSEW KA47BAM184
LOYSEW KV47BAM56
LOYSEW KV47BAM143
LOYSEW KV47BAM145
LOYSEW KV47BAM182
LOYSEW KV47BAM184
LOYSEW KH47BAM56
LOYSEW KH47BAM143
LOYSEW KH47BAM145
LOYSEW KH47BAM182
LOYSEW KH47BAM184
LOYSEW KF47AM56
LOYSEW KF47AM143
LOYSEW KF47AM145
LOYSEW KF47AM182
LOYSEW KF47AM184
LOYSEW KAF47AM56
LOYSEW KAF47AM143
LOYSEW KAF47AM145
LOYSEW KAF47AM182
LOYSEW KAF47AM184
LOYSEW KVF47AM56
LOYSEW KVF47AM143
LOYSEW KVF47AM145
LOYSEW KVF47AM182
LOYSEW KVF47AM184
LOYSEW KHF47AM56
LOYSEW KHF47AM143
LOYSEW KHF47AM145
LOYSEW KHF47AM182
LOYSEW KHF47AM184
LOYSEW KA47AM56
LOYSEW KA47AM143
LOYSEW KA47AM145
LOYSEW KA47AM182
LOYSEW KA47AM184
LOYSEW KV47AM56
LOYSEW KV47AM143
LOYSEW KV47AM145
LOYSEW KV47AM182
LOYSEW KV47AM184
LOYSEW KH47AM56
LOYSEW KH47AM143
LOYSEW KH47AM145
LOYSEW KH47AM182
LOYSEW KH47AM184
LOYSEW KAZ47AM56
LOYSEW KAZ47AM143
LOYSEW KAZ47AM145
LOYSEW KAZ47AM182
LOYSEW KAZ47AM184
LOYSEW KVZ47AM56
LOYSEW KVZ47AM143
LOYSEW KVZ47AM145
LOYSEW KVZ47AM182
LOYSEW KVZ47AM184
LOYSEW KHZ47AM56
LOYSEW KHZ47AM143
LOYSEW KHZ47AM145
LOYSEW KHZ47AM182
LOYSEW KHZ47AM184
LOYSEW KT47AM56
LOYSEW KT47AM143
LOYSEW KT47AM145
LOYSEW KT47AM182
LOYSEW KT47AM184
LOYSEW K49AM56
LOYSEW K49AM143
LOYSEW K49AM145
LOYSEW K49AM182
LOYSEW K49AM184
LOYSEW K49AM213/215
LOYSEW KF49AM56
LOYSEW KF49AM143
LOYSEW KF49AM145
LOYSEW KF49AM182
LOYSEW KF49AM184
LOYSEW KF49AM213/215
LOYSEW KAF49AM56
LOYSEW KAF49AM143
LOYSEW KAF49AM145
LOYSEW KAF49AM182
LOYSEW KAF49AM184
LOYSEW KAF49AM213/215
LOYSEW KA49AM56
LOYSEW KA49AM143
LOYSEW KA49AM145
LOYSEW KA49AM182
LOYSEW KA49AM184
LOYSEW KA49AM213/215
LOYSEW KT49AM56
LOYSEW KT49AM143
LOYSEW KT49AM145
LOYSEW KT49AM182
LOYSEW KT49AM184
LOYSEW KT49AM213/215
LOYSEW K57AM56
LOYSEW K57AM143
LOYSEW K57AM145
LOYSEW K57AM182
LOYSEW K57AM184
LOYSEW K57AM213/215
LOYSEW KA57BAM56
LOYSEW KA57BAM143
LOYSEW KA57BAM145
LOYSEW KA57BAM182
LOYSEW KA57BAM184
LOYSEW KA57BAM213/215
LOYSEW KV57BAM56
LOYSEW KV57BAM143
LOYSEW KV57BAM145
LOYSEW KV57BAM182
LOYSEW KV57BAM184
LOYSEW KV57BAM213/215
LOYSEW KH57BAM56
LOYSEW KH57BAM143
LOYSEW KH57BAM145
LOYSEW KH57BAM182
LOYSEW KH57BAM184
LOYSEW KH57BAM213/215
LOYSEW KF57AM56
LOYSEW KF57AM143
LOYSEW KF57AM145
LOYSEW KF57AM182
LOYSEW KF57AM184
LOYSEW KF57AM213/215
LOYSEW KAF57AM56
LOYSEW KAF57AM143
LOYSEW KAF57AM145
LOYSEW KAF57AM182
LOYSEW KAF57AM184
LOYSEW KAF57AM213/215
LOYSEW KVF57AM56
LOYSEW KVF57AM143
LOYSEW KVF57AM145
LOYSEW KVF57AM182
LOYSEW KVF57AM184
LOYSEW KA57AM56
LOYSEW KA57AM143
LOYSEW KA57AM145
LOYSEW KA57AM182
LOYSEW KA57AM184
LOYSEW KA57AM213/215
LOYSEW KV57AM56
LOYSEW KV57AM143
LOYSEW KV57AM145
LOYSEW KV57AM182
LOYSEW KV57AM184
LOYSEW KV57AM213/215
LOYSEW KH57AM56
LOYSEW KH57AM143
LOYSEW KH57AM145
LOYSEW KH57AM182
LOYSEW KH57AM184
LOYSEW KH57AM213/215
LOYSEW KAZ57AM56
LOYSEW KAZ57AM143
LOYSEW KAZ57AM145
LOYSEW KAZ57AM182
LOYSEW KA57AM184
LOYSEW KAZ57AM213/215
LOYSEW KVZ57AM56
LOYSEW KVZ57AM143
LOYSEW KVZ57AM145
LOYSEW KVZ57AM182
LOYSEW KVZ57AM184
LOYSEW KVZ57AM213/215
LOYSEW KT57AM56
LOYSEW KT57AM143
LOYSEW KT57AM145
LOYSEW KT57AM182
LOYSEW KT57AM184
LOYSEW KT57AM213/215
LOYSEW K67AM56
LOYSEW K67AM143
LOYSEW K67AM145
LOYSEW K67AM182
LOYSEW K67AM184
LOYSEW K67AM213/215
LOYSEW KA67BAM56
LOYSEW KA67BAM143
LOYSEW KA67BAM145
LOYSEW KA67BAM182
LOYSEW KA67BAM184
LOYSEW KA67BAM213/215
LOYSEW KV67BAM56
LOYSEW KV67BAM143
LOYSEW KV67BAM145
LOYSEW KV67BAM182
LOYSEW KV67BAM184
LOYSEW KV67BAM213/215
LOYSEW KH67BAM56
LOYSEW KH67BAM143
LOYSEW KH67BAM145
LOYSEW KH67BAM182
LOYSEW KH67BAM184
LOYSEW KH67BAM213/215
LOYSEW KF67AM56
LOYSEW KF67AM143
LOYSEW KF67AM145
LOYSEW KF67AM182
LOYSEW KF67AM184
LOYSEW KF67AM213/215
LOYSEW KAF67AM56
LOYSEW KAF67AM143
LOYSEW KAF67AM145
LOYSEW KAF67AM182
LOYSEW KAF67AM184
LOYSEW KAF67AM213/215
LOYSEW KVF67AM56
LOYSEW KVF67AM143
LOYSEW KVF67AM145
LOYSEW KVF67AM182
LOYSEW KVF67AM184
LOYSEW KVF67AM213/215
LOYSEW KHF67AM56
LOYSEW KHF67AM143
LOYSEW KHF67AM145
LOYSEW KHF67AM182
LOYSEW KHF67AM184
LOYSEW KHF67AM213/215
LOYSEW KA67AM56
LOYSEW KA67AM143
LOYSEW KA67AM145
LOYSEW KA67AM182
LOYSEW KA67AM184
LOYSEW KA67AM213/215
LOYSEW KV67AM56
LOYSEW KV67AM143
LOYSEW KV67AM145
LOYSEW KV67AM182
LOYSEW KV67AM184
LOYSEW KV67AM213/215
LOYSEW KH67AM56
LOYSEW KH67AM143
LOYSEW KH67AM145
LOYSEW KH67AM182
LOYSEW KH67AM184
LOYSEW KH67AM213/215
LOYSEW KAZ67AM56
LOYSEW KAZ67AM143
LOYSEW KAZ67AM145
LOYSEW KAZ67AM182
LOYSEW KAZ67AM184
LOYSEW KAZ67AM213/215
LOYSEW KVZ67AM56
LOYSEW KVZ67AM143
LOYSEW KVZ67AM145
LOYSEW KVZ67AM182
LOYSEW KVZ67AM184
LOYSEW KVZ67AM213/215
LOYSEW KHZ67AM56
LOYSEW KHZ67AM143
LOYSEW KHZ67AM145
LOYSEW KHZ67AM182
LOYSEW KHZ67AM184
LOYSEW KHZ67AM213/215
LOYSEW KT67AM56
LOYSEW KT67AM143
LOYSEW KT67AM145
LOYSEW KT67AM182
LOYSEW KT67AM184
LOYSEW KT67AM213/215
LOYSEW K77AM56
LOYSEW K77AM143
LOYSEW K77AM145
LOYSEW K77AM182
LOYSEW K77AM184
LOYSEW K77AM213/215
LOYSEW KA77BAM56
LOYSEW KA77BAM143
LOYSEW KA77BAM145
LOYSEW KA77BAM182
LOYSEW KA77BAM184
LOYSEW KA77BAM213/215
LOYSEW KF77AM56
LOYSEW KF77AM143
LOYSEW KF77AM145
LOYSEW KF77AM182
LOYSEW KF77AM184
LOYSEW KF77AM213/215
LOYSEW KAF77AM56
LOYSEW KAF77AM143
LOYSEW KAF77AM145
LOYSEW KAF77AM182
LOYSEW KAF77AM184
LOYSEW KAF77AM213/215
LOYSEW KVF77AM56
LOYSEW KVF77AM143
LOYSEW KVF77AM145
LOYSEW KVF77AM182
LOYSEW KVF77AM184
LOYSEW KVF77AM213/215
LOYSEW KHF77AM56
LOYSEW KHF77AM143
LOYSEW KHF77AM145
LOYSEW KHF77AM182
LOYSEW KHF77AM184
LOYSEW KHF77AM213/215
LOYSEW KA77AM56
LOYSEW KA77AM143
LOYSEW KA77AM145
LOYSEW KA77AM182
LOYSEW KA77AM184
LOYSEW KA77AM213/215
LOYSEW KV77AM56
LOYSEW KV77AM143
LOYSEW KV77AM145
LOYSEW KV77AM182
LOYSEW KV77AM184
LOYSEW KV77AM213/215
LOYSEW KH77AM56
LOYSEW KH77AM143
LOYSEW KH77AM145
LOYSEW KH77AM182
LOYSEW KH77AM184
LOYSEW KH77AM213/215
LOYSEW KAZ77AM56
LOYSEW KAZ77AM143
LOYSEW KAZ77AM145
LOYSEW KAZ77AM182
LOYSEW KAZ77AM184
LOYSEW KAZ77AM213/215
LOYSEW KVZ77AM56
LOYSEW KVZ77AM143
LOYSEW KVZ77AM145
LOYSEW KVZ77AM182
LOYSEW KVZ77AM184
LOYSEW KVZ77AM213/215
LOYSEW KHZ77AM56
LOYSEW KHZ77AM143
LOYSEW KHZ77AM145
LOYSEW KHZ77AM182
LOYSEW KHZ77AM184
LOYSEW KHZ77AM213/215
LOYSEW KT77AM56
LOYSEW KT77AM143
LOYSEW KT77AM145
LOYSEW KT77AM182
LOYSEW KT77AM184
LOYSEW KT77AM213/215
LOYSEW K87AM143
LOYSEW K87AM145
LOYSEW K87AM182
LOYSEW K87AM184
LOYSEW K87AM213/215
LOYSEW K87AM254/256
LOYSEW K87AM284/286
LOYSEW KA87BAM143
LOYSEW KA87BAM145
LOYSEW KA87BAM182
LOYSEW KA87BAM184
LOYSEW KA87BAM213/215
LOYSEW KA87BAM254/256
LOYSEW KA87BAM284/286
LOYSEW KV87BAM143
LOYSEW KV87BAM145
LOYSEW KV87BAM182
LOYSEW KV87BAM184
LOYSEW KV87BAM213/215
LOYSEW KV87BAM254/256
LOYSEW KV87BAM284/286
LOYSEW KH87BAM143
LOYSEW KH87BAM145
LOYSEW KH87BAM182
LOYSEW KH87BAM184
LOYSEW KH87BAM213/215
LOYSEW KH87BAM254/256
LOYSEW KH87BAM284/286
LOYSEW KF87AM143
LOYSEW KF87AM145
LOYSEW KF87AM182
LOYSEW KF87AM184
LOYSEW KF87AM213/215
LOYSEW KF87AM254/256
LOYSEW KF87AM284/286
LOYSEW KAF87AM143
LOYSEW KAF87AM145
LOYSEW KAF87AM182
LOYSEW KAF87AM184
LOYSEW KAF87AM213/215
LOYSEW KAF87AM254/256
LOYSEW KAF87AM284/286
LOYSEW KVF87AM143
LOYSEW KVF87AM145
LOYSEW KVF87AM182
LOYSEW KVF87AM184
LOYSEW KVF87AM213/215
LOYSEW KVF87AM254/256
LOYSEW KVF87AM284/286
LOYSEW KA87AM143
LOYSEW KA87AM145
LOYSEW KA87AM182
LOYSEW KA87AM184
LOYSEW KA87AM213/215
LOYSEW KA87AM254/256
LOYSEW KA87AM284/286
LOYSEW KV87AM143
LOYSEW KV87AM145
LOYSEW KV87AM182
LOYSEW KV87AM184
LOYSEW KV87AM213/215
LOYSEW KV87AM254/256
LOYSEW KV87AM284/286
LOYSEW KAZ87AM143
LOYSEW KAZ87AM145
LOYSEW KAZ87AM182
LOYSEW KAZ87AM184
LOYSEW KAZ87AM213/215
LOYSEW KAZ87AM254/256
LOYSEW KAZ87AM284/286
LOYSEW KVZ87AM143
LOYSEW KVZ87AM145
LOYSEW KVZ87AM182
LOYSEW KVZ87AM184
LOYSEW KVZ87AM213/215
LOYSEW KVZ87AM254/256
LOYSEW KVZ87AM284/286
LOYSEW KT87AM143
LOYSEW KT87AM145
LOYSEW KT87AM182
LOYSEW KT87AM184
LOYSEW KT87AM213/215
LOYSEW KT87AM254/256
LOYSEW KT87AM284/286
LOYSEW K97AM182
LOYSEW K97AM184
LOYSEW K97AM213/215
LOYSEW K97AM254/256
LOYSEW K97AM284/286
LOYSEW K97AM324/326
LOYSEW K97AM364/365
LOYSEW KA97BAM182
LOYSEW KA97BAM184
LOYSEW KA97BAM213/215
LOYSEW KA97BAM254/256
LOYSEW KA97BAM284/286
LOYSEW KA97BAM324/326
LOYSEW KA97BAM364/365
LOYSEW KV97BAM182
LOYSEW KV97BAM184
LOYSEW KV97BAM213/215
LOYSEW KV97BAM254/256
LOYSEW KV97BAM284/286
LOYSEW KV97BAM324/326
LOYSEW KV97BAM364/365
LOYSEW KH97BAM182
LOYSEW KH97BAM184
LOYSEW KH97BAM213/215
LOYSEW KH97BAM254/256
LOYSEW KH97BAM284/286
LOYSEW KH97BAM324/326
LOYSEW KH97BAM364/365
LOYSEW KF97AM182
LOYSEW KF97AM184
LOYSEW KF97AM213/215
LOYSEW KF97AM254/256
LOYSEW KF97AM284/286
LOYSEW KF97AM324/326
LOYSEW KF97AM364/365
LOYSEW KAF97AM182
LOYSEW KAF97AM184
LOYSEW KAF97AM213/215
LOYSEW KAF97AM254/256
LOYSEW KAF97AM284/286
LOYSEW KAF97AM324/326
LOYSEW KAF97AM364/365
LOYSEW KVF97AM182
LOYSEW KVF97AM184
LOYSEW KVF97AM213/215
LOYSEW KVF97AM254/256
LOYSEW KVF97AM284/286
LOYSEW KVF97AM324/326
LOYSEW KVF97AM364/365
LOYSEW KHF97AM182
LOYSEW KHF97AM184
LOYSEW KHF97AM213/215
LOYSEW KHF97AM254/256
LOYSEW KHF97AM284/286
LOYSEW KHF97AM324/326
LOYSEW KHF97AM364/365
LOYSEW KA97AM182
LOYSEW KA97AM184
LOYSEW KA97AM213/215
LOYSEW KA97AM254/256
LOYSEW KA97AM284/286
LOYSEW KA97AM324/326
LOYSEW KA97AM364/365
LOYSEW KV97AM182
LOYSEW KV97AM184
LOYSEW KV97AM213/215
LOYSEW KV97AM254/256
LOYSEW KV97AM284/286
LOYSEW KV97AM324/326
LOYSEW KV97AM364/365
LOYSEW KH97AM182
LOYSEW KH97AM184
LOYSEW KH97AM213/215
LOYSEW KH97AM254/256
LOYSEW KH97AM284/286
LOYSEW KH97AM324/326
LOYSEW KH97AM364/365
LOYSEW KAZ97AM182
LOYSEW KAZ97AM184
LOYSEW KAZ97AM213/215
LOYSEW KAZ97AM254/256
LOYSEW KAZ97AM284/286
LOYSEW KAZ97AM324/326
LOYSEW KAZ97AM364/365
LOYSEW KVZ97AM182
LOYSEW KVZ97AM184
LOYSEW KVZ97AM213/215
LOYSEW KVZ97AM254/256
LOYSEW KVZ97AM284/286
LOYSEW KVZ97AM324/326
LOYSEW KVZ97AM364/365
LOYSEW KHZ97AM182
LOYSEW KHZ97AM184
LOYSEW KHZ97AM213/215
LOYSEW KHZ97AM254/256
LOYSEW KHZ97AM284/286
LOYSEW KHZ97AM324/326
LOYSEW KHZ97AM364/365
LOYSEW KT97AM182
LOYSEW KT97AM184
LOYSEW KT97AM213/215
LOYSEW KT97AM254/256
LOYSEW KT97AM284/286
LOYSEW KT97AM324/326
LOYSEW KT97AM364/365
LOYSEW K107AM182
LOYSEW K107AM184
LOYSEW K107AM213/215
LOYSEW K107AM254/256
LOYSEW K107AM284/286
LOYSEW K107AM324/326
LOYSEW K107AM364/365
LOYSEW KA107BAM182
LOYSEW KA107BAM184
LOYSEW KA107BAM213/215
LOYSEW KA107BAM254/256
LOYSEW KA107BAM284/286
LOYSEW KA107BAM324/326
LOYSEW KA107BAM364/365
LOYSEW KV107BAM182
LOYSEW KV107BAM184
LOYSEW KV107BAM213/215
LOYSEW KV107BAM254/256
LOYSEW KV107BAM284/286
LOYSEW KV107BAM324/326
LOYSEW KV107BAM364/365
LOYSEW KH107BAM182
LOYSEW KH107BAM184
LOYSEW KH107BAM213/215
LOYSEW KH107BAM254/256
LOYSEW KH107BAM284/286
LOYSEW KH107BAM324/326
LOYSEW KH107BAM364/365
LOYSEW KF107AM182
LOYSEW KF107AM184
LOYSEW KF107AM213/215
LOYSEW KF107AM254/256
LOYSEW KF107AM284/286
LOYSEW KF107AM324/326
LOYSEW KF107AM364/365
LOYSEW KAF107AM182
LOYSEW KAF107AM184
LOYSEW KAF107AM213/215
LOYSEW KAF107AM254/256
LOYSEW KAF107AM284/286
LOYSEW KAF107AM324/326
LOYSEW KAF107AM364/365
LOYSEW KVF107AM182
LOYSEW KVF107AM184
LOYSEW KVF107AM213/215
LOYSEW KVF107AM254/256
LOYSEW KVF107AM284/286
LOYSEW KVF107AM324/326
LOYSEW KVF107AM364/365
LOYSEW KHF107AM182
LOYSEW KHF107AM184
LOYSEW KHF107AM213/215
LOYSEW KHF107AM254/256
LOYSEW KHF107AM284/286
LOYSEW KHF107AM324/326
LOYSEW KHF107AM364/365
LOYSEW KA107AM182
LOYSEW KA107AM184
LOYSEW KA107AM213/215
LOYSEW KA107AM254/256
LOYSEW KA107AM284/286
LOYSEW KA107AM324/326
LOYSEW KA107AM364/365
LOYSEW KV107AM182
LOYSEW KV107AM184
LOYSEW KV107AM213/215
LOYSEW KV107AM254/256
LOYSEW KV107AM284/286
LOYSEW KV107AM324/326
LOYSEW KV107AM364/365
LOYSEW KH107AM182
LOYSEW KH107AM184
LOYSEW KH107AM213/215
LOYSEW KH107AM254/256
LOYSEW KH107AM284/286
LOYSEW KH107AM324/326
LOYSEW KH107AM364/365
LOYSEW KAZ107AM182
LOYSEW KAZ107AM184
LOYSEW KAZ107AM213/215
LOYSEW KAZ107AM254/256
LOYSEW KAZ107AM284/286
LOYSEW KAZ107AM324/326
LOYSEW KAZ107AM364/365
LOYSEW KVZ107AM182
LOYSEW KVZ107AM184
LOYSEW KVZ107AM213/215
LOYSEW KVZ107AM254/256
LOYSEW KVZ107AM284/286
LOYSEW KVZ107AM324/326
LOYSEW KVZ107AM364/365
LOYSEW KHZ107AM182
LOYSEW KHZ107AM184
LOYSEW KHZ107AM213/215
LOYSEW KHZ107AM254/256
LOYSEW KHZ107AM284/286
LOYSEW KHZ107AM324/326
LOYSEW KHZ107AM364/365
LOYSEW KT107AM182
LOYSEW KT107AM184
LOYSEW KT107AM213/215
LOYSEW KT107AM254/256
LOYSEW KT107AM284/286
LOYSEW KT107AM324/326
LOYSEW KT107AM364/365
LOYSEW K127AM213/215
LOYSEW K127AM254/256
LOYSEW K127AM284/286
LOYSEW K127AM324/326
LOYSEW K127AM364/365
LOYSEW KA127BAM213/215
LOYSEW KA127BAM254/256
LOYSEW KA127BAM284/286
LOYSEW KA127BAM324/326
LOYSEW KA127BAM364/365
LOYSEW KV127BAM213/215
LOYSEW KV127BAM254/256
LOYSEW KV127BAM284/286
LOYSEW KV127BAM324/326
LOYSEW KV127BAM364/365
LOYSEW KH127BAM213/215
LOYSEW KH127BAM254/256
LOYSEW KH127BAM284/286
LOYSEW KH127BAM324/326
LOYSEW KH127BAM364/365
LOYSEW KF127AM213/215
LOYSEW KF127AM254/256
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LOYSEW SF77AM145
LOYSEW SF77AM182
LOYSEW SF77AM184
LOYSEW SF77AM213/215
LOYSEW SAF77AM56
LOYSEW SAF77AM143
LOYSEW SAF77AM145
LOYSEW SAF77AM182
LOYSEW SAF77AM184
LOYSEW SAF77AM213/215
LOYSEW SHF77AM56
LOYSEW SHF77AM143
LOYSEW SHF77AM145
LOYSEW SHF77AM182
LOYSEW SHF77AM184
LOYSEW SHF77AM213/215
LOYSEW SA77AM56
LOYSEW SA77AM143
LOYSEW SA77AM145
LOYSEW SA77AM182
LOYSEW SA77AM184
LOYSEW SA77AM213/215
LOYSEW SH77AM56
LOYSEW SH77AM143
LOYSEW SH77AM145
LOYSEW SH77AM182
LOYSEW SH77AM184
LOYSEW SH77AM213/215
LOYSEW SAZ77AM56
LOYSEW SAZ77AM143
LOYSEW SAZ77AM145
LOYSEW SAZ77AM182
LOYSEW SAZ77AM184
LOYSEW SAZ77AM213/215
LOYSEW SHZ77AM56
LOYSEW SHZ77AM143
LOYSEW SHZ77AM145
LOYSEW SHZ77AM182
LOYSEW SHZ77AM184
LOYSEW SHZ77AM213/215
LOYSEW ST77AM56
LOYSEW ST77AM143
LOYSEW ST77AM145
LOYSEW ST77AM182
LOYSEW ST77AM184
LOYSEW ST77AM213/215
LOYSEW S87AM143
LOYSEW S87AM145
LOYSEW S87AM182
LOYSEW S87AM184
LOYSEW S87AM213/215
LOYSEW S87AM254/256
LOYSEW S87AM284/286
LOYSEW SF87AM143
LOYSEW SF87AM145
LOYSEW SF87AM182
LOYSEW SF87AM184
LOYSEW SF87AM213/215
LOYSEW SF87AM254/256
LOYSEW SF87AM284/286
LOYSEW SAF87AM143
LOYSEW SAF87AM145
LOYSEW SAF87AM182
LOYSEW SAF87AM184
LOYSEW SAF87AM213/215
LOYSEW SAF87AM254/256
LOYSEW SAF87AM284/286
LOYSEW SHF87AM143
LOYSEW SHF87AM145
LOYSEW SHF87AM182
LOYSEW SHF87AM184
LOYSEW SHF87AM213/215
LOYSEW SHF87AM254/256
LOYSEW SHF87AM284/286
LOYSEW SA87AM143
LOYSEW SA87AM145
LOYSEW SA87AM182
LOYSEW SA87AM184
LOYSEW SA87AM213/215
LOYSEW SA87AM254/256
LOYSEW SA87AM284/286
LOYSEW SA87AM143
LOYSEW SA87AM145
LOYSEW SA87AM182
LOYSEW SA87AM184
LOYSEW SA87AM213/215
LOYSEW SA87AM254/256
LOYSEW SA87AM284/286
LOYSEW SAZ87AM143
LOYSEW SAZ87AM145
LOYSEW SAZ87AM182
LOYSEW SAZ87AM184
LOYSEW SAZ87AM213/215
LOYSEW SAZ87AM254/256
LOYSEW SAZ87AM284/286
LOYSEW SHZ87AM143
LOYSEW SHZ87AM145
LOYSEW SHZ87AM182
LOYSEW SHZ87AM184
LOYSEW SHZ87AM213/215
LOYSEW SHZ87AM254/256
LOYSEW SHZ87AM284/286
LOYSEW ST87AM143
LOYSEW ST87AM145
LOYSEW ST87AM182
LOYSEW ST87AM184
LOYSEW ST87AM213/215
LOYSEW ST87AM254/256
LOYSEW ST87AM284/286
LOYSEW S97AM182
LOYSEW S97AM184
LOYSEW S97AM213/215
LOYSEW S97AM254/256
LOYSEW S97AM284/286
LOYSEW S97AM324/326
LOYSEW S97AM364/365
LOYSEW SF97AM182
LOYSEW SF97AM184
LOYSEW SF97AM213/215
LOYSEW SF97AM254/256
LOYSEW SF97AM284/286
LOYSEW SF97AM324/326
LOYSEW SF97AM364/365
LOYSEW SAF97AM182
LOYSEW SAF97AM184
LOYSEW SAF97AM213/215
LOYSEW SAF97AM254/256
LOYSEW SAF97AM284/286
LOYSEW SAF97AM324/326
LOYSEW SAF97AM364/365
LOYSEW SHF97AM182
LOYSEW SHF97AM184
LOYSEW SHF97AM213/215
LOYSEW SHF97AM254/256
LOYSEW SHF97AM284/286
LOYSEW SHF97AM324/326
LOYSEW SHF97AM364/365
LOYSEW SA97AM182
LOYSEW SA97AM184
LOYSEW SA97AM213/215
LOYSEW SA97AM254/256
LOYSEW SA97AM284/286
LOYSEW SA97AM324/326
LOYSEW SA97AM364/365
LOYSEW SH97AM182
LOYSEW SH97AM184
LOYSEW SH97AM213/215
LOYSEW SH97AM254/256
LOYSEW SH97AM284/286
LOYSEW SH97AM324/326
LOYSEW SH97AM364/365
LOYSEW SAZ97AM182
LOYSEW SAZ97AM184
LOYSEW SAZ97AM213/215
LOYSEW SAZ97AM254/256
LOYSEW SAZ97AM284/286
LOYSEW SAZ97AM324/326
LOYSEW SAZ97AM364/365
LOYSEW SHZ97AM182
LOYSEW SHZ97AM184
LOYSEW SHZ97AM213/215
LOYSEW SHZ97AM254/256
LOYSEW SHZ97AM284/286
LOYSEW SHZ97AM324/326
LOYSEW SHZ97AM364/365
LOYSEW ST97AM182
LOYSEW ST97AM184
LOYSEW ST97AM213/215
LOYSEW ST97AM254/256
LOYSEW ST97AM284/286
LOYSEW ST97AM324/326
LOYSEW ST97AM364/365
LOYSEW S..37AM63
LOYSEW S..37AM71
LOYSEW S..37AM80
LOYSEW S..37AM90
LOYSEW S..47AM63
LOYSEW S..47AM71
LOYSEW S..47AM80
LOYSEW S..47AM90
LOYSEW S..57AM63
LOYSEW S..57AM71
LOYSEW S..57AM80
LOYSEW S..57AM90
LOYSEW S..67AM63
LOYSEW S..67AM71
LOYSEW S..67AM80
LOYSEW S..67AM90
LOYSEW S..67AM100
LOYSEW S..67AM112
LOYSEW S..67AM132S/M
LOYSEW S..77AM63
LOYSEW S..77AM71
LOYSEW S..77AM80
LOYSEW S..77AM90
LOYSEW S..77AM100
LOYSEW S..77AM112
LOYSEW S..77AM132S/M
LOYSEW S..77AM132ML
LOYSEW S..87AM80
LOYSEW S..87AM90
LOYSEW S..87AM100
LOYSEW S..87AM112
LOYSEW S..87AM132S/M
LOYSEW S..87AM132ML
LOYSEW S..87AM160
LOYSEW S..87AM180
LOYSEW S..97AM100
LOYSEW S..97AM112
LOYSEW S..97AM132S/M
LOYSEW S..97AM132ML
LOYSEW S..97AM160
LOYSEW S..97AM180
LOYSEW S..97AM200
LOYSEW S..67R37
LOYSEW S..77R37
LOYSEW S..87R57
LOYSEW S..97R57
LOYSEW S..37AD1
LOYSEW S..37AD2
LOYSEW S..47AD1
LOYSEW S..47AD2
LOYSEW S..57AD1
LOYSEW S..57AD2
LOYSEW S..67AD2
LOYSEW S..67AD3
LOYSEW S..77AD2
LOYSEW S..77AD3
LOYSEW S..77AD4
LOYSEW S..87AD2
LOYSEW S..87AD3
LOYSEW S..87AD4
LOYSEW S..87AD5
LOYSEW S..97AD3
LOYSEW S..97AD4
LOYSEW S..97AD5
LOYSEW S..97AD6
LOYSEW S..37AD1
LOYSEW S..37AD2,AD2/ZR
LOYSEW S..47AD1
LOYSEW S..47AD2,AD2/ZR
LOYSEW S..57AD1
LOYSEW S..57AD2,AD2/ZR
LOYSEW S..67AD2,AD2/ZR
LOYSEW S..67AD3,AD3/ZR
LOYSEW S..77AD2,AD2/ZR
LOYSEW S..77AD3,AD3/ZR
LOYSEW S..77AD4,AD4/ZR
LOYSEW S..87AD2,AD2/ZR
LOYSEW S..87AD3,AD3/ZR
LOYSEW S..87AD4,AD4/ZR
LOYSEW S..87AD5,AD5/ZR
LOYSEW S..97AD3,AD3/ZR
LOYSEW S..97AD4,AD4/ZR
LOYSEW S..97AD5,AD5/ZR
LOYSEW S..97AD6,AD6/ZR
LOYSEW S..67R37
LOYSEW S..77R37
LOYSEW S..87R57
LOYSEW S..97R57
LOYSEW S..37AD2/P
LOYSEW S..47AD2/P
LOYSEW S..57AD2/P
LOYSEW S..67AD2/P
LOYSEW S..67AD3/P
LOYSEW S..77AD2/P
LOYSEW S..77AD3/P
LOYSEW S..77AD4/P
LOYSEW S..87AD2/P
LOYSEW S..87AD3/P
LOYSEW S..87AD4/P
LOYSEW S..87AD5/P
LOYSEW S..97AD3/P
LOYSEW S..97AD4/P
LOYSEW S..97AD5/P
LOYSEW S..37AR71
LOYSEW S..37AR80
LOYSEW S..37AR90
LOYSEW S..47AR71
LOYSEW S..47AR80
LOYSEW S..47AR90
LOYSEW S..57AR71
LOYSEW S..57AR80
LOYSEW S..57AR90
LOYSEW S..67AR71
LOYSEW S..67AR80
LOYSEW S..67AR90
LOYSEW S..67AR100
LOYSEW S..67AR112
LOYSEW S..77AR71
LOYSEW S..77AR80
LOYSEW S..77AR90
LOYSEW S..77AR100
LOYSEW S..77AR112
LOYSEW S..77AR132S/M
LOYSEW S..77AR132ML
LOYSEW S..87AR80
LOYSEW S..87AR90
LOYSEW S..87AR100
LOYSEW S..87AR112
LOYSEW S..87AR132S/M
LOYSEW S..87AR132ML
LOYSEW S..87AR160
LOYSEW S..87AR180
LOYSEW S..97AR100
LOYSEW S..97AR112
LOYSEW S..97AR132S/M
LOYSEW S..97AR132ML
LOYSEW S..97AR160
LOYSEW S..97AR180
LOYSEW W37 AD..
LOYSEW W47 AD..
LOYSEW W37AM56
LOYSEW W37AM143
LOYSEW W37AM145
LOYSEW WA37BAM56
LOYSEW WA37BAM143
LOYSEW WA37BAM145
LOYSEW WH37BAM56
LOYSEW WH37BAM143
LOYSEW WH37BAM145
LOYSEW WF37AM56
LOYSEW WF37AM143
LOYSEW WF37AM145
LOYSEW WAF37AM56
LOYSEW WAF37AM143
LOYSEW WAF37AM145
LOYSEW WHF37AM56
LOYSEW WHF37AM143
LOYSEW WHF37AM145
LOYSEW WA37AM56
LOYSEW WA37AM143
LOYSEW WA37AM145
LOYSEW WH37AM56
LOYSEW WH37AM143
LOYSEW WH37AM145
LOYSEW WT37AM56
LOYSEW WT37AM143
LOYSEW WT37AM145
LOYSEW W47AM56
LOYSEW W47AM143
LOYSEW W47AM145
LOYSEW W47AM182
LOYSEW W47AM184
LOYSEW WA47BAM56
LOYSEW WA47BAM143
LOYSEW WA47BAM145
LOYSEW WA47BAM182
LOYSEW WA47BAM184
LOYSEW WH47BAM56
LOYSEW WH47BAM143
LOYSEW WH47BAM145
LOYSEW WH47BAM182
LOYSEW WH47BAM184
LOYSEW WF47AM56
LOYSEW WF47AM143
LOYSEW WF47AM145
LOYSEW WF47AM182
LOYSEW WF47AM184
LOYSEW WAF47AM56
LOYSEW WAF47AM143
LOYSEW WAF47AM145
LOYSEW WAF47AM182
LOYSEW WAF47AM184
LOYSEW WHF47AM56
LOYSEW WHF47AM143
LOYSEW WHF47AM145
LOYSEW WHF47AM182
LOYSEW WHF47AM184
LOYSEW WA47AM56
LOYSEW WA47AM143
LOYSEW WA47AM145
LOYSEW WA47AM182
LOYSEW WA47AM184
LOYSEW WH47AM56
LOYSEW WH47AM143
LOYSEW WH47AM145
LOYSEW WH47AM182
LOYSEW WH47AM184
LOYSEW WT47AM56
LOYSEW WT47AM143
LOYSEW WT47AM145
LOYSEW WT47AM182
LOYSEW WT47AM184
LOYSEW W..37AM63
LOYSEW W..37AM71
LOYSEW W..37AM80
LOYSEW W..37AM90
LOYSEW W..47AM63
LOYSEW W..47AM71
LOYSEW W..47AM80
LOYSEW W..47AM90
LOYSEW W..47AM100
LOYSEW W..47AM112
LOYSEW W..47AM132S/M
LOYSEW W..37AD1
LOYSEW W..37AD2
LOYSEW W..47AD2
LOYSEW W..47AD3
LOYSEW W..37AR71
LOYSEW W..37AR80
LOYSEW W..37AR90
LOYSEW W..47AR71
LOYSEW W..47AR80
LOYSEW W..47AR90

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)

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Request Sample

Customization:
Available

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Customized Request

planetary gearbox

Contribution of Planetary Gearboxes to Conveyor Belt Efficiency in Mining Operations

Planetary gearboxes play a crucial role in enhancing the efficiency and performance of conveyor belts in mining operations:

  • High Torque Transmission: Planetary gearboxes are capable of transmitting high torque with minimal backlash. This feature ensures that the gearbox efficiently handles the substantial load requirements of conveyor belts used in mining, preventing slippage and ensuring reliable material transportation.
  • Compact Design: The compact size of planetary gearboxes allows them to be integrated seamlessly into conveyor systems, optimizing space utilization and allowing for efficient equipment layout in mining environments.
  • Variable Speed Control: Planetary gearboxes provide precise speed control and can accommodate various speed requirements of conveyor belts. This versatility allows operators to adjust the conveyor speed to match specific material handling needs.
  • High Efficiency: The inherent design of planetary gearboxes minimizes energy losses due to efficient power transmission. This efficiency translates into reduced energy consumption and operational costs over the lifetime of the conveyor system.
  • Reliability and Durability: Planetary gearboxes are engineered to withstand demanding conditions often encountered in mining environments, including shock loads, abrasive materials, and harsh weather. Their robust construction ensures reliable operation and minimal downtime.
  • Low Maintenance: The durability of planetary gearboxes leads to reduced maintenance requirements. This benefit is particularly valuable in mining operations where minimizing downtime is essential for maintaining high productivity levels.
  • Customizability: Planetary gearboxes can be tailored to suit specific conveyor system requirements, including gear ratios, torque ratings, and mounting options. This flexibility allows for optimized system design and performance.

By effectively transmitting power, providing accurate speed control, and offering a compact and robust design, planetary gearboxes significantly enhance the efficiency and reliability of conveyor belts in mining operations. Their ability to handle high loads, operate with low maintenance needs, and withstand harsh conditions contributes to improved productivity and reduced operational costs.

planetary gearbox

Impact of Temperature Variations and Environmental Conditions on Planetary Gearbox Performance

The performance of planetary gearboxes can be significantly influenced by temperature variations and environmental conditions. Here’s how these factors impact their operation:

Temperature Variations: Extreme temperature fluctuations can affect the lubrication properties of the gearbox. Cold temperatures can cause the lubricant to thicken, leading to increased friction and reduced efficiency. On the other hand, high temperatures can cause the lubricant to thin out, potentially leading to insufficient lubrication and accelerated wear.

Environmental Contaminants: Planetary gearboxes used in outdoor or industrial environments can be exposed to contaminants such as dust, dirt, moisture, and chemicals. These contaminants can infiltrate the gearbox and degrade the quality of the lubricant. Additionally, abrasive particles can cause wear on gear surfaces, leading to decreased performance and potential damage.

Corrosion: Exposure to moisture, especially in humid or corrosive environments, can lead to corrosion of gearbox components. Corrosion weakens the structural integrity of gears and other components, which can ultimately result in premature failure.

Thermal Expansion: Temperature changes can cause materials to expand and contract. In gearboxes, this can lead to misalignment of gears and improper meshing, causing noise, vibration, and reduced efficiency. Proper consideration of thermal expansion is crucial in gearbox design.

Sealing and Ventilation: To mitigate the impact of temperature and environmental factors, planetary gearboxes need effective sealing to prevent contaminants from entering and to retain the lubricant. Proper ventilation is also essential to prevent pressure build-up inside the gearbox due to temperature changes.

Cooling Systems: In applications where temperature control is critical, cooling systems such as fans or heat exchangers can be incorporated to maintain optimal operating temperatures. This helps prevent overheating and ensures consistent gearbox performance.

Overall, temperature variations and environmental conditions can have a profound impact on the performance and lifespan of planetary gearboxes. Manufacturers and operators need to consider these factors during design, installation, and maintenance to ensure reliable and efficient operation.

planetary gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

China Standard Speed Reducer Fvz97, Fhz97, FT97 Series Gearbox for Construction Machinery Spare Parts   with high quality China Standard Speed Reducer Fvz97, Fhz97, FT97 Series Gearbox for Construction Machinery Spare Parts   with high quality
editor by CX 2024-04-30

China Professional CZPT Gpb Transmission Reducer Planetary Gearbox Robtic Arm Gearhead with High Quality differential gearbox

Product Description

TaiBang Motor Industry Group Co., Ltd.

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

Model Instruction

GB090-10-P2

GB 090 571 P2
Reducer Series Code External Diameter Reduction Ratio Reducer Backlash
GB:High Precision Square Flange Output

GBR:High Precision Right Angle Square Flange Output

GE:High Precision Round Flange Output

GER:High Precision Right Round Flange Output

050:ø50mm
070:ø70mm
090:ø90mm
120:ø120mm
155:ø155mm
205:ø205mm
235:ø235mm
042:42x42mm
060:60x60mm
090:90x90mm
115:115x115mm
142:142x142mm
180:180x180mm
220:220x220mm
571 means 1:10 P0:High Precision Backlash

P1:Precision Backlash

P2:Standard Backlash

Main Technical Performance
 

Item Number of stage Reduction Ratio GB042 GB060 GB060A GB090 GB090A GB115 GB142 GB180 GB220
Rotary Inertia 1 3 0.03 0.16   0.61   3.25 9.21 28.98 69.61
4 0.03 0.14   0.48   2.74 7.54 23.67 54.37
5 0.03 0.13   0.47   2.71 7.42 23.29 53.27
6 0.03 0.13   0.45   2.65 7.25 22.75 51.72
7 0.03 0.13   0.45   2.62 7.14 22.48 50.97
8 0.03 0.13   0.44   2.58 7.07 22.59 50.84
9 0.03 0.13   0.44   2.57 7.04 22.53 50.63
10 0.03 0.13   0.44   2.57 7.03 22.51 50.56
2 15 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
20 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
25 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
30 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
35 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
40 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
45 0.03 0.03 0.13 0.13 0.47 0.47 2.71 7.42 23.29
50 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51
60 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51
70 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51
80 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51
90 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51
100 0.03 0.03 0.13 0.13 0.44 0.44 2.57 7.03 22.51

 

Item Number of stage GB042 GB060 GB060A GB90 GB090A GB115 GB142 GB180 GB220
Backlash(arcmin) High Precision P0 1       ≤1 ≤1 ≤1 ≤1 ≤1 ≤1
2           ≤3 ≤3 ≤3 ≤3
Precision P1 1 ≤3 ≤3 ≤3 ≤3 ≤3 ≤3 ≤3 ≤3 ≤3
2 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5
Standard P2 1 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5 ≤5
2 ≤7 ≤7 ≤7 ≤7 ≤7 ≤7 ≤7 ≤7 ≤7
Torsional Rigidity(N.M/arcmin) 1 3 7 7 14 14 25 50 145 225
2 3 7 7 14 14 25 50 145 225
Noise(dB) 1,2 ≤56 ≤58 ≤58 ≤60 ≤60 ≤63 ≤65 ≤67 ≤70
Rated input speed(rpm) 1,2 5000 5000 5000 4000 4000 4000 3000 3000 2000
Max input speed(rpm) 1,2 10000 10000 10000 8000 8000 8000 6000 6000 4000

 Noise test standard:Distance 1m,no load.Measured with an input speed 3000rpm 

  /* 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
Function: Distribution Power, Change Drive Torque, Change Drive Direction, Speed Reduction
Layout: Cycloidal
Hardness: Hardened Tooth Surface
Installation: Vertical Type
Step: Double-Step
Samples:
US$ 50/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

Customized Request

planetary gearbox

Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes

Coaxial and parallel shaft arrangements refer to the orientation of the input and output shafts in a planetary gearbox:

  • Coaxial Shaft Arrangement: In this arrangement, the input and output shafts are aligned along the same axis, with one shaft passing through the center of the other. This design results in a compact and space-efficient gearbox, making it suitable for applications with limited space. Coaxial planetary gearboxes are commonly used in scenarios where the gearbox needs to be integrated into a compact housing or enclosure.
  • Parallel Shaft Arrangement: In a parallel shaft arrangement, the input and output shafts are positioned parallel to each other but not on the same axis. Instead, they are offset from each other. This configuration allows for greater flexibility in designing the layout of the gearbox and the surrounding machinery. Parallel shaft planetary gearboxes are often used in applications where the spatial arrangement requires the input and output shafts to be positioned in different locations.

The choice between a coaxial and parallel shaft arrangement depends on factors such as available space, mechanical requirements, and the desired layout of the overall system. Coaxial arrangements are advantageous when space is limited, while parallel arrangements offer more design flexibility for accommodating various spatial constraints.

planetary gearbox

Contribution of Planetary Gearboxes to Construction Machinery and Heavy Equipment

Planetary gearboxes play a crucial role in enhancing the proper functioning of construction machinery and heavy equipment. Here’s how they contribute:

High Torque Transmission: Construction machinery often requires high torque to handle heavy loads and perform tasks like digging, lifting, and material handling. Planetary gearboxes excel in transmitting high torque efficiently, allowing these machines to operate effectively even under demanding conditions.

Compact Design: Many construction and heavy equipment applications have limited space for gear mechanisms. Planetary gearboxes offer a compact design with a high power-to-weight ratio. This compactness allows manufacturers to integrate gearboxes into tight spaces without compromising performance.

Customizable Ratios: Different construction tasks require varying speeds and torque levels. Planetary gearboxes offer the advantage of customizable gear ratios, allowing equipment designers to tailor the gearbox to the specific needs of the application. This flexibility enhances the versatility of construction machinery.

Durability and Reliability: Construction sites are challenging environments with dust, debris, and extreme weather conditions. Planetary gearboxes are known for their durability and robustness, making them well-suited for heavy-duty applications. Their enclosed design protects internal components from contaminants and ensures reliable operation.

Efficient Power Distribution: Many construction machines are equipped with multiple functions that require power distribution among different components. Planetary gearboxes can be designed with multiple output shafts, enabling efficient distribution of power to various tasks while maintaining precise control.

Reduced Maintenance: The rugged construction and efficient power transmission of planetary gearboxes result in reduced wear and lower maintenance requirements. This is particularly beneficial in construction settings where downtime for maintenance can be costly.

Overall, planetary gearboxes contribute significantly to the proper functioning of construction machinery and heavy equipment by providing high torque, compactness, customization, durability, efficient power distribution, and reduced maintenance needs. Their capabilities enhance the performance and reliability of these machines in the demanding construction industry.

planetary gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

China Professional CZPT Gpb Transmission Reducer Planetary Gearbox Robtic Arm Gearhead with High Quality   differential gearbox	China Professional CZPT Gpb Transmission Reducer Planetary Gearbox Robtic Arm Gearhead with High Quality   differential gearbox
editor by CX 2024-04-29

China Hot selling High Torque Gearbox Reducer Worm Planetary Spur Helical Bevel Motor Gear Box car gearbox

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Features of S series reducer

The same model can be equipped with motors of various powers. It is easy to realize the combination and connection between various models.
The transmission efficiency is high, and the single reducer efficiency is up to 96%. three
The transmission ratio is subdivided and the range is wide. The combined model can form a large transmission ratio and low output speed.
The installation forms are various, and can be installed with any foot, B5 flange or B4 flange. The foot mounting reducer has 2 machined foot mounting planes.
Helical gear and worm gear combination, compact structure, large reduction ratio.
Installation mode: foot installation, hollow shaft installation, flange installation, torque arm installation, small flange installation.
Input mode: motor direct connection, motor belt connection or input shaft, connection flange input.
Average efficiency: reduction ratio 7.5-69.39 is 77%; 70.43-288 is 62%; The S/R combination is 57%.

S57 SF57 SA57 SAF57 S series helical worm gear box speed reducer 0.18kw 0.25kw 0.37kw 0.55kw 0.75kw 1.1kw 1.5kw 2.2kw 3kw, max. permissible torque up to 300Nm, transmission ratios from 10.78 to 196.21. Mounting mode: foot mounted, flange mounted, short flange mounted, torque arm mounted. Output shaft: CZPT shaft, hollow shaft (with key, with shrink disc and with involute spline).

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Hardness: Hardened Tooth Surface
Installation: 90 Degree
Layout: Expansion
Gear Shape: Bevel Gear
Step: Single-Step
Type: Gear Reducer
Samples:
US$ 100/Piece
1 Piece(Min.Order)

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planetary gearbox

Challenges in Achieving High Gear Ratios with Compactness in Planetary Gearboxes

Designing planetary gearboxes with high gear ratios while maintaining compactness presents several challenges:

  • Space Constraints: As the gear ratio increases, the number of gear stages required also increases. This can lead to larger gearbox sizes, which may be challenging to accommodate in applications with limited space.
  • Bearing Loads: Higher gear ratios often result in increased loads on the bearings and other components due to the redistribution of forces. This can impact the durability and lifespan of the gearbox.
  • Efficiency: Each gear stage introduces losses due to friction and other factors. With multiple stages, the overall efficiency of the gearbox can decrease, affecting its energy efficiency.
  • Complexity: Achieving high gear ratios can require complex gear arrangements and additional components, which can lead to increased manufacturing complexity and costs.
  • Thermal Effects: Higher gear ratios can lead to greater heat generation due to increased friction and loads. Managing thermal effects becomes crucial to prevent overheating and component failure.

To address these challenges, gearbox designers use advanced materials, precise machining techniques, and innovative bearing arrangements to optimize the design for both compactness and performance. Computer simulations and modeling play a critical role in predicting the behavior of the gearbox under different operating conditions, helping to ensure reliability and efficiency.

planetary gearbox

Contribution of Planetary Gearboxes to Construction Machinery and Heavy Equipment

Planetary gearboxes play a crucial role in enhancing the proper functioning of construction machinery and heavy equipment. Here’s how they contribute:

High Torque Transmission: Construction machinery often requires high torque to handle heavy loads and perform tasks like digging, lifting, and material handling. Planetary gearboxes excel in transmitting high torque efficiently, allowing these machines to operate effectively even under demanding conditions.

Compact Design: Many construction and heavy equipment applications have limited space for gear mechanisms. Planetary gearboxes offer a compact design with a high power-to-weight ratio. This compactness allows manufacturers to integrate gearboxes into tight spaces without compromising performance.

Customizable Ratios: Different construction tasks require varying speeds and torque levels. Planetary gearboxes offer the advantage of customizable gear ratios, allowing equipment designers to tailor the gearbox to the specific needs of the application. This flexibility enhances the versatility of construction machinery.

Durability and Reliability: Construction sites are challenging environments with dust, debris, and extreme weather conditions. Planetary gearboxes are known for their durability and robustness, making them well-suited for heavy-duty applications. Their enclosed design protects internal components from contaminants and ensures reliable operation.

Efficient Power Distribution: Many construction machines are equipped with multiple functions that require power distribution among different components. Planetary gearboxes can be designed with multiple output shafts, enabling efficient distribution of power to various tasks while maintaining precise control.

Reduced Maintenance: The rugged construction and efficient power transmission of planetary gearboxes result in reduced wear and lower maintenance requirements. This is particularly beneficial in construction settings where downtime for maintenance can be costly.

Overall, planetary gearboxes contribute significantly to the proper functioning of construction machinery and heavy equipment by providing high torque, compactness, customization, durability, efficient power distribution, and reduced maintenance needs. Their capabilities enhance the performance and reliability of these machines in the demanding construction industry.

planetary gearbox

Design Principles and Functions of Planetary Gearboxes

Planetary gearboxes, also known as epicyclic gearboxes, are a type of gearbox that consists of one or more planet gears that revolve around a central sun gear, all contained within an outer ring gear. The design principles and functions of planetary gearboxes are based on this unique arrangement:

  • Sun Gear: The sun gear is positioned at the center and is connected to the input shaft. It transmits power from the input source to the planetary gears.
  • Planet Gears: Planet gears are small gears that rotate around the sun gear. They are typically mounted on a carrier, which is connected to the output shaft. The interaction between the planet gears and the sun gear creates both speed reduction and torque amplification.
  • Ring Gear: The outer ring gear is stationary and surrounds the planet gears. The teeth of the planet gears mesh with the teeth of the ring gear. The ring gear serves as the housing for the planet gears and provides a fixed outer reference point.
  • Function: Planetary gearboxes offer various gear reduction ratios by altering the arrangement of the input, output, and planet gears. Depending on the configuration, the sun gear, planet gears, or ring gear can serve as the input, output, or stationary element. This flexibility allows planetary gearboxes to achieve different torque and speed combinations.
  • Gear Reduction: In a planetary gearbox, the planet gears rotate while also revolving around the sun gear. This double motion creates multiple gear meshing points, distributing the load and enhancing torque transmission. The output shaft, connected to the planet carrier, rotates at a lower speed and higher torque than the input shaft.
  • Torque Amplification: Due to the multiple points of contact between the planet gears and the sun gear, planetary gearboxes can achieve torque amplification. The arrangement of gears allows for load sharing and distribution, leading to efficient torque transmission.
  • Compact Size: The compact design of planetary gearboxes, achieved by stacking the gears concentrically, makes them suitable for applications where space is limited.
  • Multiple Stages: Planetary gearboxes can be designed with multiple stages, where the output of one stage becomes the input of the next. This arrangement allows for high gear reduction ratios while maintaining a compact size.
  • Controlled Motion: By controlling the arrangement of the gears and their rotation, planetary gearboxes can provide different motion outputs, including forward, reverse, and even variable speeds.

Overall, the design principles of planetary gearboxes allow them to provide efficient torque transmission, compact size, high gear reduction, and versatile motion control, making them well-suited for various applications in industries such as automotive, robotics, aerospace, and more.

China Hot selling High Torque Gearbox Reducer Worm Planetary Spur Helical Bevel Motor Gear Box   car gearbox	China Hot selling High Torque Gearbox Reducer Worm Planetary Spur Helical Bevel Motor Gear Box   car gearbox
editor by CX 2024-04-04

China Professional Speed Reducer Kt127, K157, Ka157 Series Gearbox for Construction Machinery Spare Parts differential gearbox

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LOYSEW W..47AR71
LOYSEW W..47AR80
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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)

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Customization:
Available

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planetary gearbox

Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes

Coaxial and parallel shaft arrangements refer to the orientation of the input and output shafts in a planetary gearbox:

  • Coaxial Shaft Arrangement: In this arrangement, the input and output shafts are aligned along the same axis, with one shaft passing through the center of the other. This design results in a compact and space-efficient gearbox, making it suitable for applications with limited space. Coaxial planetary gearboxes are commonly used in scenarios where the gearbox needs to be integrated into a compact housing or enclosure.
  • Parallel Shaft Arrangement: In a parallel shaft arrangement, the input and output shafts are positioned parallel to each other but not on the same axis. Instead, they are offset from each other. This configuration allows for greater flexibility in designing the layout of the gearbox and the surrounding machinery. Parallel shaft planetary gearboxes are often used in applications where the spatial arrangement requires the input and output shafts to be positioned in different locations.

The choice between a coaxial and parallel shaft arrangement depends on factors such as available space, mechanical requirements, and the desired layout of the overall system. Coaxial arrangements are advantageous when space is limited, while parallel arrangements offer more design flexibility for accommodating various spatial constraints.

planetary gearbox

The Role of Lubrication and Cooling in Maintaining Planetary Gearbox Performance

Lubrication and cooling are essential factors in ensuring the optimal performance and longevity of planetary gearboxes. Here’s how they play a crucial role:

Lubrication: Proper lubrication is vital for reducing friction and wear between gear teeth and other moving components within the gearbox. It forms a protective layer that prevents metal-to-metal contact and minimizes heat generation. The lubricant also helps dissipate heat and contaminants, ensuring a smoother and quieter operation.

Using the right type of lubricant and maintaining the proper lubrication level are essential. Over time, lubricants may degrade due to factors like temperature, load, and operating conditions. Regular lubricant analysis and replacement help maintain optimal gearbox performance.

Cooling: Planetary gearboxes can generate significant heat during operation due to friction and power transmission. Excessive heat can lead to lubricant breakdown, reduced efficiency, and premature wear. Cooling mechanisms, such as cooling fans, fins, or external cooling systems, help dissipate heat and maintain a stable operating temperature.

Efficient cooling prevents overheating and ensures consistent lubricant properties, extending the life of the gearbox components. It’s particularly important in applications with high-speed or high-torque requirements.

Overall, proper lubrication and cooling practices are essential to prevent excessive wear, maintain efficient power transmission, and prolong the service life of planetary gearboxes. Regular maintenance and monitoring of lubrication quality and cooling effectiveness are key to ensuring the continued performance of these gearboxes.

planetary gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

China Professional Speed Reducer Kt127, K157, Ka157 Series Gearbox for Construction Machinery Spare Parts   differential gearbox	China Professional Speed Reducer Kt127, K157, Ka157 Series Gearbox for Construction Machinery Spare Parts   differential gearbox
editor by CX 2024-03-28

China Custom Desboer Ndv200 Series Low Backlash High Torque Helical Gear Planetary Gearbox Speed Reducer for Servo Motor manufacturer

Product Description

Product Description

The NDV200 series planetary gearboxes are designed and machined as a single unit with special tapered roller bearings to provide high radial load, high torque, ultra-precision, and small size. The NDV200 series uses in highly rigid industries such as fiber optic laser equipment, floor track equipment, robot seventh axis, Parallel robots (spider hand) machine tools, and rotating arms.
Product Name: High Precision Planetary Reducer
Product Series: NDV200 Series
Product features: high torque, high load, ultra-precision, small size
Product Description:
Integrated design concept with high-strength bearings ensure the product itself is durable and efficient
A variety of output ideas such as shaft output, flange and gear are available.
1 arc minute ≤ backlash ≤ 3 arc minutes
Reduction ratios ranging from 3 to 100
Frame design: increases torque and optimizes power transmission
Optimised selection of oil seals: reduces friction and laminate transmission efficiency
Protection class IP65
Warranty: 2 years

Detailed Photos

Our Advantages

High torque
High load
ultra-precision
Small size

Product Parameters

 

Segment number Single segment
Ratio i 4 5 7 10
Rated output torque Nm 1040 1140 1040 850
Emergency stop torque Nm Three times of Maximum Output Torque
Rated input speed Rpm 3000
Max input speed Rpm 6000
Ultraprecise backlash arcmin ≤1
Precision backlash arcmin ≤3
Standard backlash arcmin ≤5
Torsional rigidity Nm/arcmin 440
Max.bending moment Nm 3530
Max.axial force N 17000
Service life hr 30000(15000 under continuous operation)
Efficiency % ≥97%
Weight kg 31.6
Operating Temperature ºC -10ºC~+90ºC
Lubrication   Synthetic grease
Protection class   IP64
Mounting Position   All directions
Noise level(N1=3000rpm,non-loaded) dB(A) ≤67
Rotary inertia Kg·cm² 25.03 23.29 22.48 22.51

Applicable Industry

 

Certifications

 

Company Profile

 

DESBOER (HangZhou) Transmission Technology Co., Ltd. is a subsidiary of DESBOER (China), which is committed to the design, development, customized production and sales of high precision planetary reducer as 1 of the technology company. Our company has over 10 years of design, production and sales experience, the main products are the high precision planetary reducer, gear, rack, etc., with high quality, short delivery period, high cost performance and other advantages to better serve the demand of global customers. It is worth noting that we remove the intermediate link sale from the factory directly to customers, so that you can get the most ideal price and also get our best quality service simultaneously.

 

About Research

 

In order to strengthen the advantages of products in the international market, the head company in Kyoto, Japan to established KABUSHIKIKAISYA KYOEKI, mainly engaged in the development of DESBOER high precision planetary reducer, high precision of transmission components such as the development work, to provide the most advanced design technology and the most high-quality products for the international market.

 

/* 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

After-sales Service: 2 Years
Warranty: 2 Years
Logo Printing: with Logo Printing
Size: Ndv140
Customized: Customized
Type: Gearbox
Customization:
Available

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Customized Request

planetary gearbox

Impact of Gear Tooth Design and Profile on the Efficiency of Planetary Gearboxes

The design and profile of gear teeth have a significant impact on the efficiency of planetary gearboxes:

  • Tooth Profile: The tooth profile, such as involute, cycloid, or modified profiles, affects the contact pattern and load distribution between gear teeth. An optimized profile minimizes stress concentration and ensures smooth meshing, contributing to higher efficiency.
  • Tooth Shape: The shape of gear teeth influences the amount of sliding and rolling motion during meshing. Gear teeth designed for more rolling and less sliding motion reduce friction and wear, enhancing overall efficiency.
  • Pressure Angle: The pressure angle at which gear teeth engage affects the force distribution and efficiency. Larger pressure angles can lead to higher efficiency due to improved load sharing, but they may require more space.
  • Tooth Thickness and Width: Optimized tooth thickness and width contribute to distributing the load more evenly across the gear face. Proper sizing reduces stress and increases efficiency.
  • Backlash: Backlash, the gap between meshing gear teeth, impacts efficiency by causing vibrations and energy losses. Properly controlled backlash minimizes these effects and improves efficiency.
  • Tooth Surface Finish: Smoother tooth surfaces reduce friction and wear. Proper surface finish, achieved through grinding or honing, enhances efficiency by reducing energy losses due to friction.
  • Material Selection: The choice of gear material influences wear, heat generation, and overall efficiency. Materials with good wear resistance and low friction coefficients contribute to higher efficiency.
  • Profile Modification: Profile modifications, such as tip and root relief, optimize tooth contact and reduce interference. These modifications minimize friction and increase efficiency.

In summary, the design and profile of gear teeth play a crucial role in determining the efficiency of planetary gearboxes. Optimal tooth profiles, shapes, pressure angles, thicknesses, widths, surface finishes, and material selections all contribute to reducing friction, wear, and energy losses, resulting in improved overall efficiency.

planetary gearbox

Considerations for Selecting Size and Gear Materials in Planetary Gearboxes

Choosing the appropriate size and gear materials for a planetary gearbox is crucial for optimal performance and reliability. Here are the key considerations:

1. Load and Torque Requirements: Evaluate the anticipated load and torque that the gearbox will experience in the application. Select a gearbox size that can handle the maximum load without exceeding its capacity, ensuring reliable and durable operation.

2. Gear Ratio: Determine the required gear ratio to achieve the desired output speed and torque. Different gear ratios are achieved by varying the number of teeth on the gears. Select a gearbox with a suitable gear ratio for your application’s requirements.

3. Efficiency: Consider the efficiency of the gearbox, which is influenced by factors such as gear meshing, bearing losses, and lubrication. A higher efficiency gearbox minimizes energy losses and improves overall system performance.

4. Space Constraints: Evaluate the available space for installing the gearbox. Planetary gearboxes offer compact designs, but it’s essential to ensure that the selected size fits within the available area, especially in applications with limited space.

5. Material Selection: Choose suitable gear materials based on factors like load, speed, and operating conditions. High-quality materials, such as hardened steel or specialized alloys, enhance gear strength, durability, and resistance to wear and fatigue.

6. Lubrication: Proper lubrication is critical for reducing friction and wear in the gearbox. Consider the lubrication requirements of the selected gear materials and ensure the gearbox is designed for efficient lubricant distribution and maintenance.

7. Environmental Conditions: Assess the environmental conditions in which the gearbox will operate. Factors such as temperature, humidity, and exposure to contaminants can impact gear material performance. Choose materials that can withstand the operating environment.

8. Noise and Vibration: Gear material selection can influence noise and vibration levels. Some materials are more adept at dampening vibrations and reducing noise, which is essential for applications where quiet operation is crucial.

9. Cost: Consider the budget for the gearbox and balance the cost of materials, manufacturing, and performance requirements. While high-quality materials may increase initial costs, they can lead to longer gearbox lifespan and reduced maintenance expenses.

10. Manufacturer’s Recommendations: Consult with gearbox manufacturers or experts for guidance on selecting the appropriate size and gear materials. They can provide insights based on their experience and knowledge of various applications.

Ultimately, the proper selection of size and gear materials is vital for achieving reliable, efficient, and long-lasting performance in planetary gearboxes. Taking into account load, gear ratio, materials, lubrication, and other factors ensures the gearbox meets the specific needs of the application.

planetary gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

China Custom Desboer Ndv200 Series Low Backlash High Torque Helical Gear Planetary Gearbox Speed Reducer for Servo Motor   manufacturer China Custom Desboer Ndv200 Series Low Backlash High Torque Helical Gear Planetary Gearbox Speed Reducer for Servo Motor   manufacturer
editor by CX 2024-03-14

China high quality MA340T CZPT excavator parts Rotary motor/swing/walking/final drive assembly speed/planetary reducer gearbox wholesaler

Product Description

Walking motor assembly,travel motor assembly,drive assembly

Product Description

final drive assembly,CCHC brand,for 70 ton-excavator use.

Certifications

CCHC Hydraulics has passed the attestation of  ISO9001:2015 Certificate on Dec 19,2018; ISO9001:2015 Quality Managment System Certificate and ISO14001:2015 Environmental Management System Certificate on Jan 10,2571.

 

 

Company Profile

ZheJiang CZPT Hydraulics  Co., Ltd. formerly was established in February, 2571, and officially put into operation on October 14th, 2011,the company is 1 of the subsidiaries of ZheJiang Xihu (West Lake) Dis.n Machinery Group,the total investment is 2.6 billion yuan, which is 1 of the largest high-end mechanical power flow products in China so far. The main products include pumps, valves, motors,reducers, gearboxes, etc. The product application covers engineering machinery, agricultural machinery,industry and other fields.

Packing

Packing according to customer’s requirement

ODM & OEM are both ok, since we have a sophisticated R&D team and precise equipment with the yearly output of 35000 pieces. 
Besides, we have another 3 brother companies belonging to our Xihu (West Lake) Dis.n Group. One is Xihu (West Lake) Dis.de Construction Machinery Co., Ltd, which manufactures excavators, 1 is ZheJiang Xihu (West Lake) Dis.n Paike Agricultural Machinery Co., Ltd, which is an agricultural machinery manufacturing enterprise integrating R&D, manufacturing, sales and service, the other is ZheJiang Xihu (West Lake) Dis.n Casting Industry Co. Ltd which produces cast iron and other metals.  
So, please feel no hesitate to send your inquiries, we will offer you the best price in time and the thoughtful service forever.
 
If for any other usages,pls message us the details,as photos of pumps,nameplates and excavator brands and models informations. /* 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

After-sales Service: Video and online technical support
Warranty: 1 year
Type: travel assembly
Application: Excavator
Certification: ISO9001: 2000
Condition: New
Samples:
US$ 3154/Piece
1 Piece(Min.Order)

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Customization:
Available

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planetary gearbox

Challenges in Achieving High Gear Ratios with Compactness in Planetary Gearboxes

Designing planetary gearboxes with high gear ratios while maintaining a compact form factor poses several challenges due to the intricate arrangement of gears and the need to balance various factors:

Space Constraints: Increasing the gear ratio typically requires adding more planetary stages, resulting in additional gears and components. However, limited available space can make it challenging to fit these additional components without compromising the compactness of the gearbox.

Efficiency: As the number of planetary stages increases to achieve higher gear ratios, there can be a trade-off in terms of efficiency. Additional gear meshings and friction losses can lead to decreased overall efficiency, impacting the gearbox’s performance.

Load Distribution: The distribution of loads across multiple stages becomes critical when designing high gear ratio planetary gearboxes. Proper load distribution ensures that each stage shares the load proportionally, preventing premature wear and ensuring reliable operation.

Bearing Arrangement: Accommodating multiple stages of planetary gears requires an effective bearing arrangement to support the rotating components. Improper bearing selection or arrangement can lead to increased friction, reduced efficiency, and potential failures.

Manufacturing Tolerances: Achieving high gear ratios demands tight manufacturing tolerances to ensure accurate gear tooth profiles and precise gear meshing. Any deviations can result in noise, vibration, and reduced performance.

Lubrication: Adequate lubrication becomes crucial in maintaining smooth operation and reducing friction as gear ratios increase. However, proper lubrication distribution across multiple stages can be challenging, impacting efficiency and longevity.

Noise and Vibration: The complexity of high gear ratio planetary gearboxes can lead to increased noise and vibration levels due to the higher number of gear meshing interactions. Managing noise and vibration becomes essential for ensuring acceptable performance and user comfort.

To address these challenges, engineers employ advanced design techniques, high-precision manufacturing processes, specialized materials, innovative bearing arrangements, and optimized lubrication strategies. Achieving the right balance between high gear ratios and compactness involves careful consideration of these factors to ensure the gearbox’s reliability, efficiency, and performance.

planetary gearbox

Contribution of Planetary Gearboxes to Construction Machinery and Heavy Equipment

Planetary gearboxes play a crucial role in enhancing the proper functioning of construction machinery and heavy equipment. Here’s how they contribute:

High Torque Transmission: Construction machinery often requires high torque to handle heavy loads and perform tasks like digging, lifting, and material handling. Planetary gearboxes excel in transmitting high torque efficiently, allowing these machines to operate effectively even under demanding conditions.

Compact Design: Many construction and heavy equipment applications have limited space for gear mechanisms. Planetary gearboxes offer a compact design with a high power-to-weight ratio. This compactness allows manufacturers to integrate gearboxes into tight spaces without compromising performance.

Customizable Ratios: Different construction tasks require varying speeds and torque levels. Planetary gearboxes offer the advantage of customizable gear ratios, allowing equipment designers to tailor the gearbox to the specific needs of the application. This flexibility enhances the versatility of construction machinery.

Durability and Reliability: Construction sites are challenging environments with dust, debris, and extreme weather conditions. Planetary gearboxes are known for their durability and robustness, making them well-suited for heavy-duty applications. Their enclosed design protects internal components from contaminants and ensures reliable operation.

Efficient Power Distribution: Many construction machines are equipped with multiple functions that require power distribution among different components. Planetary gearboxes can be designed with multiple output shafts, enabling efficient distribution of power to various tasks while maintaining precise control.

Reduced Maintenance: The rugged construction and efficient power transmission of planetary gearboxes result in reduced wear and lower maintenance requirements. This is particularly beneficial in construction settings where downtime for maintenance can be costly.

Overall, planetary gearboxes contribute significantly to the proper functioning of construction machinery and heavy equipment by providing high torque, compactness, customization, durability, efficient power distribution, and reduced maintenance needs. Their capabilities enhance the performance and reliability of these machines in the demanding construction industry.

planetary gearbox

Common Applications and Industries of Planetary Gearboxes

Planetary gearboxes are widely utilized across various industries and applications due to their unique design and performance characteristics. Some common applications and industries where planetary gearboxes are commonly used include:

  • Automotive Industry: Planetary gearboxes are found in automatic transmissions, hybrid vehicle systems, and powertrains. They provide efficient torque conversion and variable gear ratios.
  • Robotics: Planetary gearboxes are used in robotic joints and manipulators, providing compact and high-torque solutions for precise movement.
  • Industrial Machinery: They are employed in conveyors, cranes, pumps, mixers, and various heavy-duty machinery where high torque and compact design are essential.
  • Aerospace: Aerospace applications include aircraft actuation systems, landing gear mechanisms, and satellite deployment mechanisms.
  • Material Handling: Planetary gearboxes are used in equipment like forklifts and pallet jacks to provide controlled movement and high lifting capabilities.
  • Renewable Energy: Wind turbines use planetary gearboxes to convert low-speed, high-torque rotational motion of the blades into higher-speed rotational motion for power generation.
  • Medical Devices: Planetary gearboxes find applications in medical imaging equipment, prosthetics, and surgical robots for precise and controlled motion.
  • Mining and Construction: Planetary gearboxes are used in heavy equipment like excavators, loaders, and bulldozers to handle heavy loads and provide controlled movement.
  • Marine Industry: They are employed in marine propulsion systems, winches, and steering mechanisms, benefiting from their compact design and high torque capabilities.

The versatility of planetary gearboxes makes them suitable for applications that require compact size, high torque density, and efficient power transmission. Their ability to handle varying torque loads, offer high gear ratios, and maintain consistent performance has led to their widespread adoption across numerous industries.

China high quality MA340T CZPT excavator parts Rotary motor/swing/walking/final drive assembly speed/planetary reducer gearbox   wholesaler China high quality MA340T CZPT excavator parts Rotary motor/swing/walking/final drive assembly speed/planetary reducer gearbox   wholesaler
editor by CX 2024-03-11