China manufacturer High Torque High Precision Planetary Gear Box(78ZDR9-400T1) components of gearbox

Product Description

Helical Gear High Precision Planetary Gear Box For 1500W Servo motor Small Gearbox manufacture

Detailed Photos

 

Product Description

High precision planetary gearbox matched with serve motor, stepping motor are widely used. Lowest backlash<3"); High output torques; High efficiency(96%); Honed toothings; 22 ratios I=3, …., 512; Low noise(<65dB(A)); Any mounting position; Easy motor mounting; Life time lubrication; Figure diameters 40, 60, 80, 120, 160mm. More options.

Planetary gearbox:
ZDE: Precision planetary-round flange output
ZDF: Precision planetary-square flange output
ZDWE: Precise planetary-right angle round flange output
ZDWF: Precise planetary-right angle square flange output
ZDS: Precise planetary-high rigidity, low back lash
ZDR: Helical Gear High Precision Planetary Gear Box

Product Parameters

 

Rated output torque N. M 4.5-1800
Instant stop torque N. M Two times of rated output torque
Life Hour 30, 000
Full load efficiency   90%, 94%, 96%
Operating temperature ° C -25—+90
IP   IP54
Lubrication type   Lifetime lubrication
Mounting type   Any

 

Product type   PL40 PL60 PL80 PL120 PL1600
Torsional stiffness N. M/arcmin 0.7 1.8 4.5 12 38
Noise dB(A) 55 58 60 65 70
Max output speed Min 10000 8000 6000 6000 6000
Recommend input speed Min 4500 4000 4000 4000 3000

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Company Profile

 

FAQ

Q: What’re your main products?
A: We currently produce Brushed Dc Motors, Brushed Dc Gear Motors, Planetary Dc Gear Motors, Brushless Dc Motors, Stepper motors, Ac Motors and High Precision Planetary Gear Box etc. You can check the specifications for above motors on our website and you can email us to recommend needed motors per your specification too.

Q: How to select a suitable motor?
A:If you have motor pictures or drawings to show us, or you have detailed specs like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.

Q: Do you have a customized service for your standard motors?
A: Yes, we can customize per your request for the voltage, speed, torque and shaft size/shape. If you need additional wires/cables soldered on the terminal or need to add connectors, or capacitors or EMC we can make it too.

Q: Do you have an individual design service for motors?
A: Yes, we would like to design motors individually for our customers, but it may need some mold developing cost and design charge. 

Q: What’s your lead time?
A: Generally speaking, our regular standard product will need 15-30days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.

Please contact us if you have detailed requests, thank you !

Application: Power
Phase: Single
Certification: CCC, CE, UL. RoHS
Brand: ZD MOTOR
Power of Servo Motor: 1500W
Reduction Ratio: 9
Customization:
Available

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Customized Request

pulley gearbox

How do pulley gearboxes contribute to energy efficiency and reduced power consumption?

Pulley gearboxes play a significant role in improving energy efficiency and reducing power consumption in various mechanical systems. They achieve this through several mechanisms and advantages inherent to their design and operation. Here’s a detailed explanation of how pulley gearboxes contribute to energy efficiency and reduced power consumption:

Speed Reduction: One of the primary functions of pulley gearboxes is to reduce the rotational speed of the input shaft while increasing the torque at the output shaft. This speed reduction allows the driven equipment to operate at a lower speed without sacrificing the required torque. By slowing down the rotational speed, pulley gearboxes enable the use of smaller and more efficient motors or engines, which consume less power compared to their high-speed counterparts. This speed reduction mechanism contributes to energy savings in applications where high speeds are not necessary.

Torque Multiplication: Pulley gearboxes also provide torque multiplication, allowing higher torque to be delivered at the output shaft compared to the input shaft. This torque multiplication capability enables the use of smaller and more efficient motors or engines that can operate at lower torque levels. By reducing the torque demand on the driving source, such as an electric motor, pulley gearboxes help optimize power consumption and improve overall energy efficiency.

Efficient Power Transfer: Pulley gearboxes employ belts or chains to transmit power between the input and output shafts. These flexible power transmission elements have the advantage of dampening vibrations and reducing noise compared to direct gear-to-gear mechanisms. The use of belts or chains also helps to mitigate shock loads and minimize backlash, resulting in smoother power transmission. The reduced mechanical losses and improved power transfer efficiency contribute to energy savings and increased overall system efficiency.

Variable Speed Control: Pulley gearboxes, especially those with adjustable pulley sizes or multiple stages, offer the advantage of variable speed control. By adjusting the position of the belt on the pulleys or changing the gear ratio, the output speed can be easily modified to match the requirements of the driven equipment or process. This variable speed control capability allows for optimal operation in different load conditions, avoiding unnecessary energy consumption at higher speeds when lower speeds would suffice. By adapting the speed to the specific needs of the application, pulley gearboxes contribute to energy efficiency and reduced power consumption.

Load Matching: Pulley gearboxes facilitate load matching, which means optimizing the speed and torque characteristics of the output shaft to match the requirements of the driven load. By selecting the appropriate pulley sizes or gear ratios, the pulley gearbox can be tailored to provide the right combination of speed and torque for the specific application. This load matching capability ensures that the driven equipment operates at its most efficient point, minimizing energy losses and reducing power consumption.

Power Loss Minimization: Pulley gearboxes are designed to minimize power losses resulting from friction and mechanical inefficiencies. Manufacturers employ various techniques to improve the efficiency of pulley gearboxes, such as using high-quality bearings, optimizing gear tooth profiles, reducing internal clearances, and selecting low-friction materials. These design considerations help minimize power losses and maximize energy transfer efficiency, thereby reducing power consumption.

System Optimization: Pulley gearboxes are often integrated into larger mechanical systems where the overall system efficiency is critical. By providing the necessary speed reduction, torque multiplication, and load matching capabilities, pulley gearboxes enable the optimization of the entire system. This optimization may involve selecting the most efficient motor, engine, or prime mover, as well as optimizing the sizing and selection of other components in the system. By contributing to system efficiency, pulley gearboxes play a vital role in reducing overall power consumption.

It is important to note that the energy efficiency and power consumption of pulley gearboxes depend not only on their design and operation but also on other factors such as the application, load conditions, maintenance, and the overall system design. Collaborating with experienced engineers and manufacturers can help ensure the proper selection, sizing, and utilization of pulley gearboxes to achieve the desired energy efficiency and power savings.

pulley gearbox

How do pulley gearboxes ensure efficient power transmission and speed regulation?

Pulley gearboxes employ various mechanisms and design features to ensure efficient power transmission and speed regulation. These elements work together to optimize the transfer of power and enable precise control over the rotational speed. Here’s a detailed explanation of how pulley gearboxes achieve efficient power transmission and speed regulation:

  • Pulley Size and Ratio Selection: Pulley gearboxes utilize different pulley sizes and ratios to achieve the desired speed regulation and power transmission efficiency. By selecting appropriate pulley sizes, the gear ratio can be adjusted to match the specific requirements of the application. This ensures that the power is effectively transferred from the driving pulley to the driven pulley, allowing for efficient power transmission.
  • Mechanical Advantage: Pulley gearboxes leverage the principle of mechanical advantage to enhance power transmission efficiency. The use of different-sized pulleys creates a mechanical advantage that amplifies the torque output. Larger driving pulleys and smaller driven pulleys result in a higher mechanical advantage, allowing for greater torque transfer. This mechanical advantage ensures efficient power transmission, especially when dealing with varying load conditions.
  • Tension and Friction Control: Proper tension and friction control are vital for efficient power transmission in pulley gearboxes. The tension in the belts or ropes connecting the pulleys is adjusted to ensure a firm grip and prevent slippage. Adequate tension helps maximize power transfer efficiency. The friction between the belts or ropes and the pulleys is also optimized to facilitate smooth power transmission. The right amount of friction ensures effective torque transfer while minimizing energy losses.
  • Material Selection: The choice of materials for the pulleys, belts or ropes, and other gearbox components plays a crucial role in efficient power transmission. High-quality materials with low friction coefficients and high tensile strength are used to reduce energy losses and minimize wear. The materials are selected based on the specific application requirements to ensure optimal performance and durability.
  • Alignment and Belt Tracking: Proper alignment of the pulleys and accurate belt tracking contribute to efficient power transmission and speed regulation. Misalignment and incorrect belt tracking can lead to increased friction, energy losses, and premature wear. Pulley gearboxes are designed with features that facilitate easy alignment adjustment and belt tracking to maintain optimal power transmission efficiency.
  • Efficiency Optimization: Pulley gearboxes undergo design optimizations to maximize power transmission efficiency. This includes reducing frictional losses through the use of high-quality bearings, improved lubrication systems, and efficient sealing mechanisms. Minimizing internal losses within the gearbox components helps ensure efficient power transmission and speed regulation.
  • Speed Control Mechanisms: Pulley gearboxes often incorporate speed control mechanisms to regulate the rotational speed of the driven pulley. These mechanisms can include adjustable pulley systems, variable speed drives, or additional gear stages. By providing the ability to adjust the speed ratio, pulley gearboxes enable precise speed regulation and accommodate varying operational requirements.

Overall, pulley gearboxes ensure efficient power transmission and speed regulation through a combination of pulley size and ratio selection, mechanical advantage, tension and friction control, material selection, alignment and belt tracking, efficiency optimization, and speed control mechanisms. These design elements work together to optimize power transfer, minimize energy losses, and provide reliable speed regulation in a wide range of applications.

pulley gearbox

How do pulley gearboxes contribute to power transmission and speed control?

Pulley gearboxes play a significant role in power transmission and speed control in mechanical systems. They offer several advantages that contribute to efficient power transmission and precise speed control. Here’s a detailed explanation of how pulley gearboxes contribute to power transmission and speed control:

  • Power Transmission: Pulley gearboxes facilitate power transmission between rotating shafts by utilizing belts or ropes and pulleys. The belts or ropes wrap around the pulleys and create a frictional force that transfers power from the driving pulley (input shaft) to the driven pulley (output shaft). The friction between the belts or ropes and the pulleys ensures efficient power transmission without slippage, allowing for the transfer of rotational force and torque from one shaft to another.
  • Speed Conversion: Pulley gearboxes enable speed conversion by utilizing pulleys of different sizes. The size of a pulley is determined by its diameter. When the driving pulley has a smaller diameter than the driven pulley, the rotational speed is increased, but the torque is reduced. Conversely, when the driving pulley has a larger diameter than the driven pulley, the rotational speed is decreased, but the torque is increased. By arranging pulleys of different sizes and connecting them with belts or ropes, pulley gearboxes allow for precise speed control and adaptation to specific operational requirements.
  • Adjustability: Pulley gearboxes offer adjustability in power transmission and speed control. The sizes of the pulleys can be easily changed to modify the speed and torque ratios. By selecting pulleys of different diameters, the gear ratio can be adjusted to achieve the desired speed and torque output. This adjustability allows for flexibility in adapting to different load conditions, operational requirements, and system constraints.
  • Multiple Pulley Configurations: Pulley gearboxes can be designed with multiple pulleys and belts or ropes to create more complex speed and torque conversion systems. These configurations involve additional intermediate pulleys and idler pulleys to redirect the belt or rope path. By combining pulleys of different sizes and arranging them in various configurations, pulley gearboxes can achieve specific speed and torque ratios, allowing for precise control and optimization of power transmission.
  • Efficiency: Pulley gearboxes offer high power transmission efficiency. The use of belts or ropes in the pulley system helps absorb shocks and vibrations, resulting in smoother operation and reduced energy losses. The friction between the belts or ropes and the pulleys ensures efficient power transfer without slippage, enabling maximum power transmission from the driving pulley to the driven pulley.
  • Smooth Operation: The combination of belts or ropes and pulleys in pulley gearboxes provides smooth operation. The flexibility and elasticity of the belts or ropes help dampen shocks and vibrations, resulting in reduced noise and improved overall system performance. The smooth operation contributes to enhanced user experience, reduced wear and tear on components, and increased system longevity.

Pulley gearboxes offer a reliable and versatile solution for power transmission and speed control in various mechanical systems. Their ability to efficiently transfer power, provide precise speed control, offer adjustability, and facilitate smooth operation makes them suitable for applications where power transmission and speed conversion are essential, such as conveyor systems, industrial machinery, automotive accessories, exercise machines, and more.

China manufacturer High Torque High Precision Planetary Gear Box(78ZDR9-400T1)   components of gearbox	China manufacturer High Torque High Precision Planetary Gear Box(78ZDR9-400T1)   components of gearbox
editor by CX 2023-09-12

pulley gearbox

As one of leading pulley gearbox manufacturers, suppliers and exporters of mechanical products, We offer pulley gearbox and many other products.

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