China high quality Poly Chain Gt 2 Timing Belt Pulley pulley design

Product Description

CHINAMFG Machinery offers a wide range of high quality Timing Belt Pulleys and Toothed Bars / Timing Bars. Standard and non-standard pulleys according to drawings are available.

Types of material:
  1.  AlCuMgPb 6061 6082 Aluminum Timing Pulley
  2.  C45E 1045 S45C Carbon Steel Timing Pulley
  3.  GG25 HT250 Cast Iron Timing Pulley
  4.  SUS303 SUS304 AISI431 Stainless Steel Timing Pulley
  5.  Other material on demand, such as cooper, bronze and plastic
 
Types of surface treatment
 1.   Anodized surface -Aluminum Pulleys
 2.   Hard anodized surface — Aluminum Pulleys
 3.   Black Oxidized surface — Steel Pulleys
 4.  Zinc plated surface — Steel Pulleys
 5.  Chromate surface — Steel Pulleys;  Cast Iron Pulleys
 6.  Nickel plated surface –Steel Pulleys;  Cast Iron Pulleys 
 
Types of teeth profile

Teeth Profile Pitch
HTD 3M,5M,8M,14M,20M
AT AT5,AT10,AT20
T T2.5,T5,T10
MXL 0.08″(2.032MM)
XL 1/5″(5.08MM)
L 3/8″(9.525MM)
H 1/2″(12.7MM)
XH 7/8″(22.225MM)
XXH 1 1/4″(31.75MM)
STS STPD S2M,S3M,S4.5M,S5M,S8M,S14M
RPP RPP5M,RPP8M,RPP14M,RPP20M
PGGT PGGT  2GT, 3GT and 5GT
PCGT GT8M,GT14M

 
Types of pitches and sizes

Imperial Inch Timing Belt Pulley,
1.     Pilot Bore MXL571 for 6.35mm timing belt; teeth number from 16 to 72;
2.  Pilot Bore XL037 for 9.53mm timing belt; teeth number from 10 to 72;
3.  Pilot Bore, Taper Bore L050 for 12.7mm timing belt; teeth number from 10 to 120;
4.  Pilot Bore, Taper Bore L075 for 19.05mm timing belt; teeth number from 10 to 120;
5.  Pilot Bore, Taper Bore L100 for 25.4mm timing belt; teeth number from 10 to 120;
6.  Pilot Bore, Taper Bore H075 for 19.05mm timing belt; teeth number from 14 to 50;
7.  Pilot Bore, Taper Bore H100 for 25.4mm timing belt; teeth number from 14 to 156;
8.  Pilot Bore, Taper Bore H150 for 38.1mm timing belt; teeth number from 14 to 156;
9.  Pilot Bore, Taper Bore H200 for 50.8mm timing belt; teeth number from 14 to 156;
10.  Pilot Bore, Taper Bore H300 for 76.2mm timing belt; teeth number from 14 to 156;
11.  Taper Bore XH200 for 50.8mm timing belt; teeth number from 18 to 120;
12.  Taper Bore XH300 for 76.2mm timing belt; teeth number from 18 to 120;
13.  Taper Bore XH400 for 101.6mm timing belt; teeth number from 18 to 120;

Metric Timing Belt Pulley T and AT
1.  Pilot Bore T2.5-16 for 6mm timing belt; teeth number from 12 to 60; 
2.   Pilot Bore T5-21 for 10mm timing belt; teeth number from 10 to 60; 
3.   Pilot Bore T5-27 for 16mm timing belt; teeth number from 10 to 60; 
4.   Pilot Bore T5-36 for 25mm timing belt; teeth number from 10 to 60; 
5.   Pilot Bore T10-31 for 16mm timing belt; teeth number from 12 to 60; 
6.   Pilot Bore T10-40 for 25mm timing belt; teeth number from 12 to 60; 
7.   Pilot Bore T10-47 for 32mm timing belt; teeth number from 18 to 60; 
8.   Pilot Bore T10-66 for 50mm timing belt; teeth number from 18 to 60;
9.  Pilot Bore AT5-21 for 10mm timing belt; teeth number from 12 to 60;
10. Pilot Bore AT5-27 for 16mm timing belt; teeth number from 12 to 60;
11. Pilot Bore AT5-36 for 25mm timing belt; teeth number from 12 to 60; 
12. Pilot Bore AT10-31 for 16mm timing belt; teeth number from 15 to 60; 
13. Pilot Bore AT10-40 for 25mm timing belt; teeth number from 15 to 60; 
14. Pilot Bore AT10-47 for 32mm timing belt; teeth number from 18 to 60; 
15. Pilot Bore AT10-66 for 50mm timing belt; teeth number from 18 to 60;
  
Metric Timing Belt Pulley HTD3M, 5M, 8M, 14M 
1.  HTD3M-06; 3M-09; 3M-15; teeth number from 10 to 72; 
2.  HTD5M-09; 5M-15; 5M-25; teeth number from 12 to 72; 
3.  HTD8M-20; 8M-30; 8M-50; 8M-85 teeth number from 22 to 192; 
4.  HTD14M-40; 14M-55; 14M-85; 14M-115; 14M-170; teeth number from 28-216; 
5.  Taper Bore HTD5M-15; 8M-20; 8M-30; 8M-50; 8M-85; 14M-40; 14M-55; 14M-85;
         14M-115; 14M-170

Metric Timing Belt Pulleys for Poly Chain GT2 Belts 
1.      PCGT8M-12; PCGT8M-21; PCGT8M-36; PCGT8M-62; 
2.      PCGT14M-20; PCGT14M-37; PCGT14M-68; PCGT14M-90; PCGT14M-125;

Power Grip CHINAMFG Tooth/ PGGT 2GT, 3GT and 5GT 
1. 2GT-06, 2GT-09 for timing belt width 6mm and 9mm 
2. 3GT-09, 3GT-15 for timing belt width 9mm and 15mm 
3. 5GT-15, 5GT-25 for timing belt width 15mm and 25mm

OMEGA RPP HTD Timing Pulleys 
1.   RPP3M-06; 3M-09; 3M-15; teeth number from 10 to 72; 
2.   RPP5M-09; 5M-15; 5M-25; teeth number from 12 to 72; 
3.   RPP8M-20; 8M-30; 8M-50; 8M-85 teeth number from 22 to 192; 
4.   RPP14M-40; 14M-55; 14M-85; 14M-115; 14M-170; teeth number from 28-216; 
5.  Taper Bore RPP5M-15; 8M-20; 8M-30; 8M-50; 8M-85; 14M-40; 14M-55; 14M-85;
     14M-115; 14M-170 .

Ubet Machinery is also competetive on these power transmission components.

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Certification: ISO
Pulley Sizes: Timing
Manufacturing Process: Sawing
Samples:
US$ 3/Piece
1 Piece(Min.Order)

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Normally sample order can be ready in 15 days
Customization:
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htd pulley

Are there specific guidelines for selecting the right HTD pulley for an application?

Yes, there are specific guidelines that can help in selecting the right HTD pulley for an application. The selection process involves considering various factors such as the application requirements, operating conditions, and pulley specifications. Here’s a detailed explanation of the guidelines for selecting the right HTD pulley:

1. Determine the Application Requirements:

Firstly, it’s important to understand the specific requirements of the application. This includes considering parameters such as the desired speed, torque, power transmission capacity, and the type of motion (linear or rotary). Additionally, determine if the application requires any specific features such as anti-backlash, vibration dampening, or precise positioning. Understanding the application requirements is crucial for selecting a pulley that can meet the performance criteria.

2. Calculate the Belt Length and Pitch:

The next step is to calculate the required belt length and pitch. This depends on the distance between pulley centers and the desired center-to-center distance. The belt length and pitch must be compatible with the selected HTD pulley to ensure proper engagement and power transmission. Manufacturers provide guidelines or equations to calculate the belt length based on the application parameters.

3. Consider Pulley Specifications:

When selecting an HTD pulley, consider the pulley specifications such as the number of teeth, pitch diameter, and bore size. The number of teeth determines the transmission ratio and affects the speed and torque output. The pitch diameter affects the belt’s wrap angle and the pulley’s contact area with the belt. The bore size should match the shaft diameter or allow for proper mounting methods (keyway, set screw, etc.). Additionally, consider the material of the pulley, which may vary based on factors like corrosion resistance or weight requirements.

4. Assess Load and Torque Requirements:

Evaluate the load and torque requirements of the application. This includes considering the maximum load or force that the pulley system needs to transmit. The torque requirements depend on the power output and the speed of the application. Ensure that the selected HTD pulley is capable of handling the anticipated loads and torques without exceeding its rated capacity. Refer to manufacturer specifications and load capacity charts to make an informed selection.

5. Account for Operating Conditions:

Take into account the operating conditions in which the HTD pulley will be used. Factors such as temperature, humidity, exposure to chemicals or solvents, and presence of contaminants can affect the performance and durability of the pulley. Ensure that the selected pulley is made from a suitable material that can withstand the specific operating conditions encountered in the application.

6. Consult Manufacturer or Supplier:

If in doubt or if the application has unique requirements, it is advisable to consult the manufacturer or supplier. They can provide expert guidance and recommend the most suitable HTD pulley based on the specific application details. Manufacturers often have technical support teams that can assist with the selection process and provide customized solutions if necessary.

7. Consider Cost and Availability:

Lastly, consider the cost and availability of the selected HTD pulley. Evaluate the pricing based on the pulley’s quality, performance, and material specifications. Additionally, ensure that the chosen pulley is readily available from reliable suppliers to prevent delays in the application’s development or maintenance.

In summary, the selection of the right HTD pulley involves determining the application requirements, calculating the belt length and pitch, considering pulley specifications, assessing load and torque requirements, accounting for operating conditions, consulting manufacturers or suppliers, and considering cost and availability. By following these guidelines and considering the specific application needs, an appropriate HTD pulley can be selected to ensure optimal performance, reliability, and longevity in the application.

htd pulley

What safety considerations should be kept in mind when using HTD pulleys?

When using HTD pulleys, it is important to keep several safety considerations in mind. Here’s a detailed explanation of the safety considerations associated with HTD pulley usage:

1. Machinery Guarding:

Proper machinery guarding is essential when using HTD pulleys. Machinery should be enclosed or fitted with guards to prevent accidental contact with moving pulleys and belts. Guards should be designed to restrict access to the pulley area, ensuring that operators and maintenance personnel are protected from potential hazards. This helps prevent injuries caused by entanglement, pinching, or shearing between the pulleys and other objects or body parts.

2. Lockout/Tagout Procedures:

Lockout/tagout procedures should be followed when working on machinery with HTD pulleys. Before performing any maintenance, repair, or adjustment tasks, the power source should be locked out and tagged out to prevent unexpected startup or energization. This ensures that the pulleys and associated machinery remain in a safe and de-energized state, reducing the risk of entanglement or other accidents during maintenance activities.

3. Proper Training and Procedures:

Operators and maintenance personnel should receive proper training on the safe operation and maintenance procedures related to HTD pulleys. They should be educated on the potential hazards associated with pulleys, such as pinch points, rotating parts, and the importance of following safety guidelines. Training should cover topics such as proper belt tensioning, alignment procedures, and safe handling practices to minimize the risk of accidents or injuries.

4. Personal Protective Equipment (PPE):

Appropriate personal protective equipment (PPE) should be worn when working with HTD pulleys or in the vicinity of machinery equipped with pulleys. This may include safety glasses, gloves, and protective clothing to protect against potential hazards like flying debris, chemical splashes, or accidental contact with moving parts. The specific PPE requirements should be determined based on the tasks being performed and the associated risks.

5. Regular Maintenance and Inspections:

Regular maintenance and inspections of HTD pulleys are crucial for safety and optimal performance. Pulleys should be inspected for wear, damage, or misalignment, and any issues should be promptly addressed. Routine maintenance tasks, such as belt tension checks and lubrication, should be carried out according to the manufacturer’s recommendations. This helps ensure that the pulleys operate safely and efficiently, reducing the risk of unexpected failures or accidents.

6. Risk Assessment:

A comprehensive risk assessment should be conducted when working with machinery that incorporates HTD pulleys. This assessment should identify potential hazards, evaluate the associated risks, and implement appropriate control measures to mitigate those risks. The risk assessment should take into account factors such as pulley speed, pinch points, accessibility, and the overall machinery design to establish a safe working environment.

In summary, several safety considerations should be kept in mind when using HTD pulleys. These include implementing proper machinery guarding, following lockout/tagout procedures, providing adequate training and procedures, using appropriate personal protective equipment, conducting regular maintenance and inspections, and conducting a thorough risk assessment. By addressing these safety considerations, the risks associated with HTD pulley usage can be minimized, ensuring a safe working environment for operators and maintenance personnel.

htd pulley

How do HTD pulleys contribute to efficient power transmission?

HTD pulleys, which stand for “High Torque Drive” pulleys, play a significant role in ensuring efficient power transmission in various mechanical systems. Here’s a detailed explanation of how HTD pulleys contribute to efficient power transmission:

1. Tooth Profile and Tooth Engagement:

HTD pulleys have a specific tooth profile that matches the shape of HTD belts. The trapezoidal tooth profile allows for a larger contact area between the pulley and the belt compared to other pulley types. This increased contact area improves the power transfer efficiency by reducing the concentration of forces on individual teeth. The efficient tooth engagement minimizes slippage and ensures a reliable transfer of power from the pulley to the belt.

2. Precise Timing and Synchronization:

HTD pulleys and belts are designed to provide accurate timing and synchronization between the driving and driven components. The teeth of the pulley and belt interlock precisely, ensuring that the rotational motion is transferred with minimal timing errors. This precise timing is crucial in applications where multiple components need to work together, such as in robotics, automation, and CNC machines. By maintaining accurate timing and synchronization, HTD pulleys contribute to efficient power transmission without the loss of energy due to timing inconsistencies.

3. Reduced Backlash:

Backlash refers to the slight movement or play that can occur between the teeth of a pulley and the corresponding belt. HTD pulleys are designed to minimize backlash, which helps in maintaining accurate motion control. By reducing backlash, HTD pulleys prevent energy loss and ensure precise power transmission. This is particularly important in applications where precise positioning or synchronization is required, such as in CNC machines or robotic systems.

4. Load Distribution:

HTD pulleys distribute the transmitted load evenly across the teeth of the pulley and belt. The trapezoidal tooth profile and the design of HTD belts allow for a larger contact area between the teeth, resulting in better load distribution. This even load distribution helps prevent tooth wear, reduces the risk of tooth damage, and improves the overall efficiency of power transmission. It ensures that the power is evenly distributed across the pulley, minimizing any concentration of stress or load on individual teeth.

5. Material and Construction:

HTD pulleys are available in various materials, including aluminum, steel, or plastic. The material choice depends on factors such as the application requirements and environmental conditions. The selection of appropriate materials contributes to efficient power transmission by ensuring the pulleys’ durability, strength, and resistance to wear and fatigue. The use of high-quality materials also reduces friction and heat generation, further enhancing the efficiency of power transmission.

6. Belt Retention and Stability:

HTD pulleys often feature flanges on either side of the toothed section. These flanges help keep the HTD belt properly aligned and prevent it from slipping off the pulley during operation. The flanges provide lateral guidance and improve the overall stability of the belt. By ensuring secure belt retention, HTD pulleys minimize the risk of power loss due to belt misalignment or disengagement, contributing to efficient power transmission.

In summary, HTD pulleys contribute to efficient power transmission through their specific tooth profile, precise timing and synchronization, reduced backlash, even load distribution, choice of quality materials, and belt retention features. These design elements and characteristics minimize energy losses, improve power transfer efficiency, enhance system performance, and ensure reliable operation in various mechanical systems and applications.

China high quality Poly Chain Gt 2 Timing Belt Pulley   pulley design	China high quality Poly Chain Gt 2 Timing Belt Pulley   pulley design
editor by CX