China Good quality V Belt Pulley Transmission Timing Sheaves Wheel Pulleys Chain Block Wheels Wire Rope Crankshaft Timing Double Blocks Lifting Grooved Cast Iron Pulley belt pulley

Product Description

V Belt Alternator Chain Double Pulley Block Timing Crankshaft Machine Manufacturer Price Vee Sheave SPA CHINAMFG Spc Spz China Manufacturer
pulley machine
1) V-Belt pulleys for taper bushes

SPZ    

Groove  type range 
1  50~500 
2  50~630 
3  63~630 
4  80~630 
5  85~630 
6  100~630 
8  140~630 
SPA   

Groove  type range 
1  63~630 
2  63~800 
3  71~900 
4  90~900 
5  100~900 
6  100~900 

 

 

SPB

Groove  type range 
1  100~315 
2  100~800 
3  100~1250 
4  125~1250 
5  125~1250 
6  140~1250 
8  170~1250 
10  224~1000 
SPC

Groove  type range 
3  200~1250 
4  200~1250 
5  200~1250 
6  200~1250 
8  200~1250

2)V-belt pulleys with CHINAMFG hub

SPZ

Groove  type range 
1  45~355 
2  45~400 
3  45~400 
SPA

Groove  type range 
1  40~560 
2  40~630 
3  56~630 
4  63~630 
5  63~630 

 

SPB

Groove  type range 
1  56~630 
2  56~630 
3  56~630 
4  80~630 
5  80~630 
6  100~630 
SPC

Groove  type range 
1  100~315 
2  130~450 
3  140~630 
4  150~630 
5  180~630 
6  180~630 

 
3) Adjustable Speed V-belt pulleys prebored and for taper bushes

Type  Profile 
5VS092-1  10X6 SPZ 
5VS093-1  10X6 13X8 
5VS108-1  10X6 13X8 SPZ SPA 
5VS120-1  10X6 13X8 SPZ SPA 
5VS138-1  10X6 13X8 SPZ SPA 
5VS159-1  10X8 SPA 
5VS180-1  10X8 17X11 SPA SPB 
5VS120-2  10X6 13 X8 SPZ SPA 
5VS138-2  10X6 13 X8 SPZ SPA 
5VS159-2  13X8 SPA 
5VS180-2  13X8 17X11 SPA SPB 
5VS200-2  13X8 17X11 SPA SPB 
5VS250-2  13X8 17X11 SPA SPB SPC 

In power transmission, belts are flexible loops of material that can link 2 rotating shafts mechanically and transmit power
between them. Belts are also the primary component in belt drives, where 1 or more continuous belts are fitted over 2 pulleys
at 2 shafts and rotary motion is transferred from the driving pulley to the driven pulley.

As compared to chain drives and gear drives, belt drives run quietly and smoothly and do not need lubrication. Maintenance is also
comparatively convenient, and the driven shaft speed can be easily altered by changing pulley sizes.

The most common types of belts are V-belts and timing belts. V-belts are the most common type of belt today, and as their name
suggests, their cross-sectional shape comes in the form of a “V”. Generally endless, the “V” cross-sections of these belts lodge
in the mating grooves of their corresponding V-belt pulleys, preventing slipping due to under-10sioning. In general, V-belts
require less width and tension compared to flat belts.

Timing belts are toothed belts that enable positive drive. They have rows of interlocking teeth that fit securely with a toothed
pulley to avoid slipping. Timing belts require less tension than other belts, have no slippage, and do not require lubrication,
however their power capacity is lower than V-belts and chains. They are frequently used in camshafts of automobiles and
crankshafts.

 

 

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Certification: CE, ISO
Pulley Sizes: Type A
Manufacturing Process: Casting
Material: Iron
Surface Treatment: Phosphating
Application: Chemical Industry, Grain Transport, Mining Transport, Power Plant
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

Customized Request

grooved pulley

How do you select the right grooved pulley for a specific industrial application?

Selecting the right grooved pulley for a specific industrial application involves considering several factors to ensure optimal performance and reliability. Here are the steps to guide you in the selection process:

1. Identify the Application Requirements:

– Determine the specific application requirements, including the type of machinery or equipment where the pulley will be used, the power transmission needs, speed requirements, and environmental conditions (such as temperature and humidity).

2. Determine the Belt Type:

– Identify the type of belt that will be used with the grooved pulley, such as V-belt, flat belt, timing belt, or poly-V belt. Each belt type has specific dimensions, profiles, and load-bearing capabilities, and the pulley must be compatible with the belt to ensure efficient power transmission.

3. Calculate Power Requirements:

– Determine the power requirements of the system, including the torque or horsepower that needs to be transmitted. This information is crucial for selecting a grooved pulley with the appropriate size, groove profile, and material construction to handle the required power load.

4. Consider Speed Ratio:

– If the application requires a specific speed ratio between the driving and driven pulleys, calculate the desired speed ratio. This information will help in selecting the pulley sizes and groove profiles that will achieve the required speed ratio.

5. Evaluate Space Constraints:

– Assess the available space for installing the grooved pulley system. Consider the diameter and width of the pulley, as well as any clearance requirements. Ensure that the selected pulley can fit within the available space without interfering with other components or causing alignment issues.

6. Assess Environmental Factors:

– Take into account the environmental conditions in which the pulley will operate. Factors such as temperature extremes, moisture, dust, or exposure to chemicals may require selecting a pulley made from specific materials or with protective coatings for enhanced durability and resistance to corrosion or wear.

7. Consult Manufacturer’s Recommendations:

– Refer to the manufacturer’s guidelines, specifications, and recommendations for the specific grooved pulley types and sizes suitable for your application. Manufacturers often provide detailed information on the load-bearing capacity, speed limits, and other performance characteristics of their pulleys.

8. Consider Specialized Features:

– Evaluate if any specialized features are required for your application. This could include crowned pulleys for belt tracking, idler pulleys for belt guidance, or adjustable pulleys for variable speed applications. Select a pulley that offers the necessary features to optimize performance and reliability.

9. Verify Compatibility:

– Double-check the compatibility between the selected grooved pulley and the belt, ensuring that they have matching profiles, dimensions, and load capacities. This step is crucial to prevent slippage, premature wear, or damage to the belt or pulley.

10. Review Cost and Availability:

– Consider the cost and availability of the chosen grooved pulley. Compare prices from different suppliers and assess the availability of spare parts or replacements to ensure long-term support for your industrial application.

By following these steps and considering the specific requirements of your industrial application, you can select the right grooved pulley that will provide efficient power transmission, reliable performance, and extended service life.

grooved pulley

How does the groove shape and size affect the pulley’s performance?

The groove shape and size of a pulley have a significant impact on its performance in power transmission systems. Here’s a detailed explanation of how the groove shape and size affect the pulley’s performance:

1. Belt Grip and Traction:

The shape and size of the groove play a crucial role in providing adequate belt grip and traction. The groove shape is typically V-shaped, and its angle determines the contact area between the pulley and the belt. A deeper and wider groove with a steeper angle increases the contact area, enhancing the grip and traction between the pulley and the belt. This improved grip minimizes slippage and ensures efficient power transfer.

2. Belt Alignment:

The groove shape and size influence the alignment of the belt on the pulley. The shape of the groove, whether it is symmetric or asymmetric, affects the positioning of the belt. A properly designed groove shape helps guide the belt and keep it aligned on the pulley during operation. This alignment feature prevents belt wandering or slipping off the pulley, supporting smooth and consistent power transmission.

3. Load Distribution:

The groove shape and size also contribute to load distribution across the belt’s surface. A wider and deeper groove provides a larger contact area with the belt, allowing for better load distribution. This even distribution of the transmitted load reduces stress concentrations on specific points of the belt, minimizing the risk of belt failure and ensuring efficient power transmission.

4. Belt Wear:

The groove shape and size can impact belt wear. A properly designed groove shape distributes the contact forces more evenly on the belt, reducing localized wear. The size of the groove, specifically its width and depth, should be appropriate for the belt size to prevent excessive wear. Improper groove dimensions can cause accelerated belt wear, leading to reduced belt lifespan and potential system failures.

5. Belt Flexibility:

The groove shape and size can affect the flexibility of the belt. The groove dimensions should match the belt’s thickness and flexibility to ensure proper fit and prevent excessive bending or deformation of the belt. If the groove is too narrow or shallow, it may restrict the belt’s movement and flexibility, leading to increased friction and wear. On the other hand, an oversized groove may cause the belt to sit loosely, compromising power transmission efficiency.

6. Noise and Vibration:

The groove shape and size can impact the generation of noise and vibrations in the power transmission system. A well-designed groove shape helps to dampen vibrations that can occur during power transmission, reducing noise and potential damage to the system. The size of the groove can also influence the noise level. If the groove is too narrow, it may cause excessive noise due to increased friction between the belt and the pulley.

7. Belt Type Compatibility:

The groove shape and size should be compatible with the specific type of belt used in the power transmission system. Different types of belts, such as V-belts, V-ribbed belts, or timing belts, have specific requirements for groove shape and size. Ensuring the proper groove dimensions for the specific belt type is essential to achieve optimal performance and prevent premature belt failure.

In summary, the groove shape and size of a pulley significantly impact its performance in power transmission systems. These factors influence belt grip and traction, belt alignment, load distribution, belt wear, belt flexibility, noise and vibration levels, as well as compatibility with the belt type. Proper design and selection of the groove shape and size are crucial for achieving efficient and reliable power transmission.

grooved pulley

Can you explain the design features and advantages of grooved pulleys?

Grooved pulleys, also known as V-groove pulleys, are designed with specific features that offer several advantages in various applications. Here’s a detailed explanation of the design features and advantages of grooved pulleys:

1. Groove Configuration:

Grooved pulleys feature one or more grooves along their circumference. These grooves are typically V-shaped, although there are variations such as double V-grooves or multi-groove configurations. The V-shaped grooves are precision-engineered to match the corresponding V-belts or V-ribbed belts. The angle and depth of the grooves are designed to optimize the grip and contact area between the pulley and the belt, ensuring efficient power transmission.

2. Belt Traction:

One of the key advantages of grooved pulleys is their ability to provide enhanced belt traction. The V-grooves create multiple contact points between the pulley and the belt, increasing the friction and grip. This improved traction prevents belt slippage, which is especially important in applications with high loads, torque, or speed. The increased traction ensures reliable power transmission and reduces the risk of power loss or inefficiency.

3. Alignment and Tracking:

Grooved pulleys assist in belt alignment and tracking. The V-grooves guide the V-belt or V-ribbed belt, helping to keep it centered on the pulley. This alignment feature reduces the chances of the belt wandering or slipping off the pulley, even during operation under varying loads or conditions. Proper alignment and tracking lead to smooth and consistent power transmission, minimizing vibrations and extending the lifespan of both the belt and the pulley.

4. Load Distribution:

The grooves in grooved pulleys aid in distributing the load evenly across the belt’s surface. As the belt sits within the grooves, the contact area between the belt and the pulley increases. This broader contact area allows for better load distribution, reducing stress concentration on specific points of the belt. The even load distribution helps prevent premature wear and damage to both the belt and the pulley, enhancing their longevity and reliability.

5. Noise Reduction:

Grooved pulleys can contribute to noise reduction in mechanical systems. The V-grooves help dampen vibrations and minimize noise generated during power transmission. The belt’s secure grip within the grooves reduces the chances of belt slippage and the associated noise. This feature is particularly beneficial in applications where a quiet operating environment is desired, such as in residential or commercial settings.

6. Versatility:

Grooved pulleys are available in various sizes and configurations, making them versatile for different applications. Whether it’s a single-groove pulley for light-duty applications or a multi-groove pulley for heavy-duty industrial systems, there are options to accommodate specific belt requirements and power transmission needs. This versatility allows grooved pulleys to be used in a wide range of industries, including automotive, manufacturing, HVAC, and more.

7. Maintenance and Replacement:

When it comes to maintenance and replacement, grooved pulleys offer convenience. The design allows for easy belt installation and removal. V-belts or V-ribbed belts can be quickly placed within the grooves or removed when necessary, simplifying maintenance tasks and reducing downtime. Additionally, grooved pulleys are readily available in the market, making it convenient to find replacements when needed.

In summary, the design features and advantages of grooved pulleys include their groove configuration optimized for specific belts, enhanced belt traction, alignment and tracking assistance, load distribution capabilities, noise reduction properties, versatility for different applications, and convenience in maintenance and replacement. These features make grooved pulleys reliable and efficient components for power transmission systems, contributing to smooth operation, extended belt and pulley life, and overall system performance.

China Good quality V Belt Pulley Transmission Timing Sheaves Wheel Pulleys Chain Block Wheels Wire Rope Crankshaft Timing Double Blocks Lifting Grooved Cast Iron Pulley   belt pulley	China Good quality V Belt Pulley Transmission Timing Sheaves Wheel Pulleys Chain Block Wheels Wire Rope Crankshaft Timing Double Blocks Lifting Grooved Cast Iron Pulley   belt pulley
editor by CX

2024-04-26

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