China Good quality Power Transmission Parts Timing Belt Pulleys supplier

Product Description

CHINAMFG Machinery specializes in power transmission components:

1.     Keyless Locking Devices,
2.     Timing Belt Pulleys,
3.     Nylon Sleeve Couplings,
4.     Jaw Couplings,
5.     Shaft Collars; Fixing Collar,
6.     Spur Gears and other parts,
7.     Torque Limiters,
8.     Mechanical Parts made-to-order

·         Ubet Keyless Locking Devices are used in rotating machinery,  producing clamping pressure between surface of locking device and shaft to create adjustable and releasable mechanical connection,  so as to clamp gears,  pulleys and other components to a shaft without threads or keys
Materials of CHINAMFG Locking Device are available in:
Carbon Steel S45C, C45E, 1045, 40Cr, 42CrMo4V  
Stainless Steel AISI431, AISI304
·         Ubet Machinery Timing Belt Pulleys and Toothed Bars/ Timing Bars. 
Standard and non-standard pulleys according to drawings are available. 
Materials of CHINAMFG Timing Belt Pulleys are available in:
AlCuMgPb 6061 6082 Aluminum Timing Pulley
C45E 1045 S45C Carbon Steel Timing Pulley
GG25 HT250 Cast Iron Timing Pulley
SUS303 SUS304 AISI431 Stainless Steel Timing Pulley
Other material on demand, such as cooper, bronze and plastic
·         Ubet Jaw couplings are designed as 3 piece combination,  including 2 hubs and 1 elastomer made of polyurethane.  The curved jaw fits CHINAMFG the spider,  which minimizes shock to the motor and other sensitive equipment.
Material: Alluminum for size below 42
               Steel for size over 42
Finish: Natural or Anodizing
Size Range: 19 to 75
Finished bore: according to ISO fit H7
Keyway width: according to DIN 6885/1
The Tolerance of keyway is Js9

Process Equipment Precision Degree Machining range
Blank Making Resin bonded sand production line;Vertical parting flaskless molding line,146 opening production line;Electric furnace; CHINAMFG cupola; Guillotine shear,Punching machine; Forge rolling machine; Precision die forging machine; precision cast; precision forging; precision molding All sorts of casting and forging parts
Heat Treatment Vertical furnace; Speckled furnace;High frequency quenching furnace Material hardness transformation≤HRC1 Hardening and Tempering; Quenching; High frequency quenching; Carburizing and quenching
Machining Precise NC machine Dimesion tolerance 6 degree; Roughness Ra0.8; Roundness,straightness and concentricity accuracy≤0.01mm inner hole≥5mm, outside diameter ≤800mm
Grinding machining NC excircle grinding machine; Surface grinding machine Dimesion precision 5 degree; Roughness Ra0.4 Outside diameter 3mm to 320mm
Teeth-profile Making NC gear hobbing maching; gear slotting machine Roughness Ra1.6; Concentricity 0.05 Maximum module M=10, OD≤1800mm
Hobbing and drilling CNC machine;drilling machine;NC milling machine Hole dimesion tolerance 6 degree; positioning accuracy 0.05 Workbench leghth 1650mm; width 852mm; minimum diameter 1mm
Other Machining Hydraulic broaching machine; sawing machine; punching machine; lather labeling machine keyway tolerance 7 degree; symmetry degree 0.05 spline; straight keyway; spline keyway
Surface Treatment polishing machine; plating production line; spray-painting line;coating line;oxidizing line; phosphating line In accordance with European standard RoHS. Surface polishing; Cr6+free zinc plating,Nickle hard chromium; Decorative chrome plating;Nickle;Paiting; phosphating; Anodizing;blackening;Dacrotized

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Pulley Sizes: Timing
Manufacturing Process: Sawing
Material: Steel,Aluminum,Stainless Steel
Surface Treatment: Black Oxide, Phosphating, Nickel Plating
Application: Chemical Industry, Grain Transport, Mining Transport, Power Plant
Power Lock: as, Rfn7012, Tlk200
US$ 3/Piece
1 Piece(Min.Order)

Request Sample



Customized Request

timing pulley

How do timing pulleys contribute to efficient power distribution?

Timing pulleys play a crucial role in ensuring efficient power distribution in various mechanical systems. Here’s how timing pulleys contribute to efficient power distribution:

1. Precise Timing and Synchronization:

Timing pulleys, in conjunction with timing belts or chains, synchronize the rotation of different components within a system. By maintaining precise timing between the input and output shafts, timing pulleys ensure that power is distributed accurately and efficiently. This synchronization prevents power loss due to misalignment or timing discrepancies.

2. Positive Drive System:

Timing pulleys create a positive drive system when paired with timing belts or chains. The teeth on the pulleys interlock with the teeth on the belt or chain, creating a firm grip that eliminates slippage. This positive drive ensures that power is efficiently transmitted from the driving pulley to the driven pulley without any energy loss.

3. Load Distribution:

Timing pulleys help distribute the load evenly across the system by transmitting power from the driving pulley to the driven pulley. The pulley’s design and tooth profile enable the load to be distributed over a larger contact area, reducing stress concentration on individual components. This even load distribution enhances the overall efficiency of power transmission.

4. Reduced Friction and Wear:

Timing pulleys, particularly those made of materials with low friction coefficients, minimize friction and wear during power transmission. The smooth engagement between the pulley teeth and the belt or chain reduces energy losses caused by friction. Additionally, materials with excellent wear resistance properties extend the lifespan of the pulleys, ensuring long-term efficiency.

5. Tension Control:

Timing pulleys, in combination with tensioner and idler pulleys, help maintain the appropriate tension in the timing belt or chain. Proper tension control ensures that the belt or chain remains securely engaged with the pulleys, preventing power loss due to slippage. By maintaining optimal tension, timing pulleys contribute to efficient power distribution throughout the system.

6. System Optimization:

Timing pulleys allow for system optimization by providing flexibility in gear ratios and power transmission configurations. By selecting pulleys with different diameters or tooth profiles, engineers can adjust the speed and torque distribution within the system. This optimization ensures that power is distributed efficiently, matching the requirements of the specific application.

Overall, timing pulleys ensure efficient power distribution by providing precise timing, creating a positive drive system, evenly distributing loads, reducing friction and wear, controlling tension, and enabling system optimization. These factors contribute to the overall efficiency, reliability, and performance of mechanical systems where timing pulleys are utilized.

timing pulley

How are timing pulleys integrated into CNC machines for positioning?

Timing pulleys play a crucial role in CNC (Computer Numerical Control) machines for precise positioning of the tool or workpiece. Here’s an explanation of how timing pulleys are integrated into CNC machines for positioning:

1. Drive System:

In a CNC machine, timing pulleys are often used as part of the drive system. The driving pulley is connected to a motor, typically a stepper motor or a servo motor, which provides rotational power. The driven pulley is connected to the axis or axes responsible for moving the tool or workpiece. The timing belt or chain, meshing with the pulleys, transfers the rotational motion from the motor to the driven pulley, enabling precise positioning.

2. Synchronization:

The primary purpose of timing pulleys in CNC machines is to achieve synchronization between the motor and the axis movement. By using toothed timing belts or chains, the rotational motion from the motor is precisely transferred to the driven pulley. The teeth on the timing belt or chain mesh with the teeth on the pulley, creating a positive engagement that ensures accurate and synchronized movement.

3. Pulley Ratios:

To achieve the desired positioning accuracy, CNC machines often utilize different pulley ratios. By varying the diameter or the number of teeth on the pulleys, the speed and torque of the driven axis can be adjusted. This allows for fine-tuning the positioning performance based on the specific requirements of the CNC application.

4. Multiple Axes:

CNC machines commonly have multiple axes, such as X, Y, and Z axes for three-dimensional movement. Each axis is equipped with its respective timing pulley system. The pulleys and timing belts or chains for each axis are carefully calibrated and synchronized to ensure coordinated movement and precise positioning in all directions.

5. Tensioning and Alignment:

Proper tensioning and alignment of the timing belts or chains are essential for accurate positioning in CNC machines. Adequate tension ensures that the belts or chains maintain the necessary grip and engagement with the pulleys, preventing slippage or backlash. Regular inspection and adjustment of tension and alignment are necessary to maintain optimal positioning performance.

6. Encoder Feedback:

To enhance positioning accuracy, CNC machines often incorporate encoder feedback systems. Encoders provide precise position feedback to the control system, allowing for closed-loop control. The encoder is usually connected to the driven pulley, enabling real-time monitoring and adjustment of the position to ensure accurate positioning during operation.

7. Control System Integration:

The timing pulley systems in CNC machines are integrated into the overall control system. The control software sends commands to the motor, dictating the desired positioning and movement. The control system interprets the input signals, calculates the appropriate motor rotations, and adjusts the timing pulley system to achieve the specified positioning accuracy.

In summary, timing pulleys are integrated into CNC machines for precise positioning by serving as part of the drive system, enabling synchronization between the motor and the driven axis, using pulley ratios to control speed and torque, accommodating multiple axes, ensuring proper tensioning and alignment, incorporating encoder feedback for enhanced accuracy, and integrating with the control system. These mechanisms and considerations work together to achieve the high precision and accuracy required in CNC machining operations.

timing pulley

How does a timing pulley differ from a standard pulley?

A timing pulley differs from a standard pulley in design and functionality. While both types of pulleys are used in mechanical systems, they serve different purposes and have distinct features. Here’s an explanation of the key differences between a timing pulley and a standard pulley:

1. Toothed Profile:

The most significant difference between a timing pulley and a standard pulley is the presence of teeth on the timing pulley. Timing pulleys have grooves or teeth on their circumferential surface that mesh with corresponding teeth on timing belts. This toothed profile enables positive engagement between the pulley and the belt, providing precise motion and preventing slippage. In contrast, standard pulleys typically have a smooth or V-shaped groove that allows for the use of flat belts or V-belts, which rely on friction for power transmission.

2. Synchronization and Timing:

Timing pulleys are specifically designed for applications that require accurate timing and synchronization. The teeth on the timing pulley mesh with the teeth on the timing belt, creating a positive drive system. This ensures that the rotational motion of the driving pulley is transferred precisely to the driven pulleys, maintaining synchronization and accurate timing. Standard pulleys, on the other hand, do not provide this level of precise timing and are commonly used in applications where synchronization is not critical.

3. Power Transmission:

A timing pulley is primarily used for power transmission in applications that require precise motion control. The positive engagement between the teeth of the timing pulley and the timing belt ensures efficient power transfer without slippage. This is particularly important in applications where accurate speed ratios and torque transmission are necessary. Standard pulleys, while also used for power transmission, rely on friction between the pulley and the belt for power transfer, which may result in some slippage under heavy loads or high speeds.

4. Customization and Configurations:

Timing pulleys offer a wide range of customization options to meet specific application requirements. They can be manufactured with different tooth profiles, pitch sizes, and numbers of teeth to achieve the desired speed ratios and torque transmission. Standard pulleys, on the other hand, have fewer customization options and are generally available in standard sizes and configurations.

5. Maintenance and Reliability:

Timing pulleys and timing belts require less maintenance compared to standard pulleys and belts. The toothed profile of timing pulleys prevents slippage, reducing the need for frequent tension adjustments. Additionally, the positive engagement between the timing pulley and the timing belt ensures reliable power transmission with minimal wear and elongation of the belt.

Overall, the main differences between a timing pulley and a standard pulley lie in their toothed profile, synchronization capabilities, precise timing, customization options, and maintenance requirements. Timing pulleys are specifically designed for applications that demand accurate motion control and synchronization, while standard pulleys are more commonly used where precise timing is not critical.

China Good quality Power Transmission Parts Timing Belt Pulleys   supplier China Good quality Power Transmission Parts Timing Belt Pulleys   supplier
editor by CX


China Timing Pulley

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

Please contact us for details.

Mail: [email protected]

Manufacturer supplier exporter of China timing pulley.

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