China Good quality High Precision Low Backlash Servo Custom Machining Small Planetary Gearbox with Good quality

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

GB090571P2
Reducer Series CodeExternal DiameterReduction RatioReducer 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 1:10P0:High Precision Backlash

P1:Precison Backlash

P2:Standard Backlash

Main Technical Performance
 

ItemNumber of stageReduction RatioGB042GB060GB060AGB090GB090AGB115GB142GB180GB220
Rotary Inertia130.030.16 0.61 3.259.2128.9869.61
40.030.14 0.48 2.747.5423.6754.37
50.030.13 0.47 2.717.4223.2953.27
60.030.13 0.45 2.657.2522.7551.72
70.030.13 0.45 2.627.1422.4850.97
80.030.13 0.44 2.587.0722.5950.84
90.030.13 0.44 2.577.0422.5350.63
100.030.13 0.44 2.577.0322.5150.56
2150.030.030.130.130.470.472.717.4223.29
200.030.030.130.130.470.472.717.4223.29
250.030.030.130.130.470.472.717.4223.29
300.030.030.130.130.470.472.717.4223.29
350.030.030.130.130.470.472.717.4223.29
400.030.030.130.130.470.472.717.4223.29
450.030.030.130.130.470.472.717.4223.29
500.030.030.130.130.440.442.577.0322.51
600.030.030.130.130.440.442.577.0322.51
700.030.030.130.130.440.442.577.0322.51
800.030.030.130.130.440.442.577.0322.51
900.030.030.130.130.440.442.577.0322.51
1000.030.030.130.130.440.442.577.0322.51

 

ItemNumber of stageGB042GB060GB060AGB90GB090AGB115GB142GB180GB220
Backlash(arcmin)High Precision P01   ≤1≤1≤1≤1≤1≤1
2     ≤3≤3≤3≤3
Precision P11≤3≤3≤3≤3≤3≤3≤3≤3≤3
2≤5≤5≤5≤5≤5≤5≤5≤5≤5
Standard P21≤5≤5≤5≤5≤5≤5≤5≤5≤5
2≤7≤7≤7≤7≤7≤7≤7≤7≤7
Torsional Rigidity(N.M/arcmin)137714142550145225
237714142550145225
Noise(dB)1,2≤56≤58≤58≤60≤60≤63≤65≤67≤70
Rated input speed(rpm)1,2500050005000400040004000300030002000
Max input speed(rpm)1,2100001000010000800080008000600060004000

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

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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)

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Request Sample

Customization:
Available

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Customized Request

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

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 Good quality High Precision Low Backlash Servo Custom Machining Small Planetary Gearbox   with Good quality China Good quality High Precision Low Backlash Servo Custom Machining Small Planetary Gearbox   with Good quality
editor by CX 2024-01-12

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