China Professional Stainless Steel V-Belt Pulley with a Step pulley puller

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 /* 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

Pulley Sizes: Timing
Manufacturing Process: Sawing
Material: Aluminum
Customization:
Available

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Customized Request

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step pulley

What role do step pulleys play in achieving variable speed control in machinery?

Step pulleys play a crucial role in achieving variable speed control in machinery. Here’s how they contribute to this capability:

1. Speed Variation:

Step pulleys provide multiple steps or levels of different diameters. By changing the position of the belt or chain from one step to another, the effective diameter of the pulley is altered. This variation in diameter results in different speed ratios between the driving pulley and the driven pulley. By selecting different steps, the rotational speed of the driven component can be adjusted, allowing for variable speed control.

2. Manual Adjustment:

Step pulleys enable manual adjustment of the speed. Operators can easily and quickly change the speed by shifting the belt or chain to a different step on the pulley. This manual adjustment feature provides simplicity and convenience in achieving the desired speed for different tasks or operating conditions.

3. Speed Range:

The arrangement of steps on the pulley determines the available speed range. Step pulleys can be designed with a range of steps, each corresponding to a specific speed ratio. This allows for a wide range of speed options, making them suitable for applications that require variable speeds.

4. Incremental Speed Control:

Step pulleys offer incremental speed control. Each step on the pulley corresponds to a specific speed ratio, allowing for precise speed adjustments. Operators can select the step that provides the desired speed increment for the specific task at hand. This incremental control is particularly useful when fine-tuning the speed for optimal performance.

5. Adaptability:

Step pulleys are adaptable to different power transmission systems. They can be easily integrated into various machinery setups, allowing for variable speed control in a wide range of applications. Whether it’s in industrial machinery, woodworking equipment, or even domestic appliances, step pulleys provide a versatile solution for achieving variable speed control.

6. Energy Efficiency:

Variable speed control offered by step pulleys contributes to energy efficiency. By adjusting the speed to match the requirements of the task, unnecessary power consumption can be avoided. This energy-saving feature is beneficial in terms of reducing operating costs and promoting sustainability.

Overall, step pulleys are essential components for achieving variable speed control in machinery. Their ability to vary speed through manual adjustment and their adaptability to different systems make them a reliable and effective solution for applications that require flexible speed control.

step pulley

How do step pulleys contribute to energy efficiency in industrial processes?

Step pulleys play a significant role in improving energy efficiency in various industrial processes. Here are some ways in which step pulleys contribute to energy efficiency:

1. Speed Control:

Step pulleys allow for precise speed control in machinery and equipment. By adjusting the belt position on different steps of the pulley, operators can optimize the rotational speed of the driven components. This enables matching the speed to the specific requirements of the process, preventing unnecessary energy consumption.

2. Variable Speed Options:

With multiple steps on the pulley, each corresponding to a different speed ratio, step pulleys offer a range of variable speed options. This versatility allows operators to select the most efficient speed for different tasks or materials. By operating at the optimal speed, energy waste is minimized, resulting in improved energy efficiency.

3. Power Transmission Efficiency:

Step pulleys contribute to power transmission efficiency in machinery and equipment. By selecting the appropriate step and corresponding belt position, the pulley ensures that power is transmitted efficiently from the driving source to the driven components. This optimization minimizes energy loss and maximizes the use of available power.

4. Load Matching:

Step pulleys enable load matching, which involves adjusting the speed of the machine to match the load requirements. In industrial processes where the load fluctuates, step pulleys allow operators to optimize the speed to match the changing demands. This prevents overloading the system and reduces energy waste.

5. Reduced Overheating:

Efficient speed control provided by step pulleys helps reduce overheating in machinery. By operating at the appropriate speed, the machine can avoid excessive friction and heat generation. This results in lower energy consumption and extends the lifespan of the equipment.

6. Energy Conservation:

By optimizing the speed and power transmission, step pulleys contribute to overall energy conservation in industrial processes. The ability to adjust the speed according to specific requirements ensures that energy is utilized only when necessary, reducing wastage and lowering energy consumption.

7. Customization for Specific Applications:

Step pulleys allow customization of machinery for specific applications, optimizing energy usage. Different materials or processes may require different operating speeds. Step pulleys enable operators to tailor the machine’s performance to meet the specific energy requirements of each application, resulting in improved efficiency.

8. Potential for Energy Recovery:

In some cases, step pulleys can be integrated into systems that allow for energy recovery. For example, in systems with regenerative braking, step pulleys can assist in capturing and redirecting energy that would otherwise be wasted, further enhancing energy efficiency.

By providing precise speed control, variable speed options, power transmission efficiency, load matching capabilities, reduced overheating, energy conservation, customization for specific applications, and the potential for energy recovery, step pulleys significantly contribute to energy efficiency in industrial processes. Their role in optimizing energy usage and reducing waste makes them valuable components in various industries.

step pulley

What are the advantages of using step pulleys in various systems?

Using step pulleys in various systems offers several advantages that make them a popular choice. Here are some of the advantages:

1. Variable Speed Control:

Step pulleys allow for variable speed control by providing multiple steps or levels of different diameters. This feature enables operators to adjust the speed of driven components, allowing for flexibility in different tasks and operating conditions.

2. Simple and Cost-Effective Design:

Step pulleys have a relatively simple design, consisting of a pulley wheel with steps and a manual adjustment mechanism. Their simplicity makes them cost-effective to manufacture, install, and maintain compared to more complex speed control systems.

3. Ease of Operation:

Step pulleys are easy to operate and require minimal training. Changing the speed is as straightforward as manually shifting the belt or chain to a different step. This simplicity makes them widely accessible and user-friendly in various applications.

4. Wide Range of Speeds:

Step pulleys offer a wide range of speed options by selecting different steps. This versatility is beneficial when different speed ranges are required for different tasks or when the load on the system varies. It allows for efficient adaptation to changing operational requirements.

5. Mechanical Advantage:

By adjusting the position of the belt or chain on different steps, a step pulley can provide a mechanical advantage. This means that it can increase the torque output while reducing the rotational speed, which is advantageous in applications where high torque is required.

6. Energy Efficiency:

Step pulleys contribute to energy efficiency by allowing precise speed control. Operators can select the optimal speed for a given task, avoiding unnecessary power consumption. This feature is particularly important in applications where energy conservation is a priority.

7. Durability and Reliability:

Step pulleys are typically built to be durable and reliable. They are often made of sturdy materials such as cast iron, steel, or aluminum, ensuring longevity and resistance to wear and tear.

8. Adaptability:

Step pulleys can be easily integrated into various systems and applications. Their adjustability and compatibility with different types of belts or cables make them adaptable to a wide range of mechanical setups.

Overall, step pulleys provide efficient speed control, simplicity of operation, and versatility, making them advantageous in numerous systems across different industries.

China Professional Stainless Steel V-Belt Pulley with a Step   pulley puller		China Professional Stainless Steel V-Belt Pulley with a Step   pulley puller
editor by CX

2024-03-13

step pulley

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

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