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China wholesaler Wrapped Banded Rubber Industrial Auto Motorcycle Transmission Synchronous Tooth Drive Ribbed Timing Poly Automotive Power V Belt axle cv joint

Product Description

 

Section:

  1. Belt top Surface: wear resistant polychloroprene rubber compound
  2. Tension cord: low-stretch polyester cord.
  3. Cushion layer: the high-adhesion polychloroprene-rubber compound
  4. Gear tooth core: Polychloroprene-rubber compound with small Kevlar fibers.
Product Benefits:

  1. High transmission ratio
  2. Large speed ratio
  3. Extraordinarily resilient
  4. Largely oil and temperature resistant
  5. Minimum slip
  6. Low levels of noise and vibrations
Features:
The V-ribbed belts with CR rubber have both heat and cold resistance capabilities, its flexing, aging and CZPT ageing resistance are generally better than those of unsaturated rubber. It also offers better oil and solvent resistance and chemical stability. It can endure high levels of transverse and belt pitch pressure and has comparatively reduced after-strained deformation.

The V-ribbed belts with EPDM rubber offer much better aging resistance, especially ozone, weather and heat resistance. In addition, this product’s electric insulation properties, chemical corrosion resistance and impact elasticity, especially at low temperature, are superior to that of CR.

Dimensions:  
Ribs Type Minimum Length(mm) Maximum Length(mm)
2 PK 786 905
3 PK 550 1285
4 PK 560 1520
5 PK 625 2055
6 PK 675 2680
7 PK 870 2355
8 PK 800 2605
9 PK 1200 4145
10 PK 1108 2063
11 PK 1515 2055
12 PK 1165 2500
3 EPK 806 885
4 EPK 711 1102
5 EPK 690 926
6 EPK 691 1873
6 DPK 1188 1853
7 DPK 1360 1400

 Producing Process
 
Testing Machines

FAQ:

1. How many years have you been in hose/belt business?
   30 years

2. Do you have big and famous customer?  How many years do you cooperate with them?
   Yes, we are cooperating with a big multinational company in USA more than 15 years. We are the sole purchasing agency of the company in China. 

3. What about your quality level?
   Because we export big amount to the multinational company, our quality of all productions are in high level. Our products have been satisfied with our customer more than 15 years. 

4. Which countries are your main sales?
   America, South America, Africa,Midde East Countries,Australia, New Zealand,Europe

5. What’s your acceptable payment terms?
  T/T and L/C are acceptable, other payments can be negotiated.
 
6. How long is the delivery time?
  Usually we can effect shipment within 20 days after confirming the order, but for coupling, it will be a little long ,about 45 days.
 
7.The how about the packing?
 The packing are plastic paper, woven bag, pallet and carton as per the items ordered.

8.  What’s the Minimum order quantity?
  The minimum order amount is USD3500.

9.  Can we place belt,hose, fitting , coupling, rubber sheet all are in small order, and ship together?
    Sure, we can do. Each week, we have lots of goods are waitting to ship. We can consolidtae all goods in one container. It’s our advantage
 
10.What are the quality standards passed?
    FDA,ISO,SGS,ROHS,REACH

 

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Material: Rubber
Color: Black
Rubber Compound: CR Rubber or EPDM
Cord: Poly Cord
Fabric: High Stength Canvas
Material Feature: Heat Oil Cold Fire Resistant
Customization:
Available

|

Customized Request

v belt

Can V-belts be used in environments with high temperatures or humidity?

V-belts can be used in environments with high temperatures or humidity, but it is important to consider the specific conditions and choose the appropriate belt material and design to ensure reliable and long-lasting performance. Here are some considerations regarding the use of V-belts in such environments:

  1. Temperature Resistance:
  2. V-belts are available in different materials that offer varying levels of temperature resistance. Standard V-belts made from materials like rubber or neoprene can typically withstand temperatures within a range of -30°C to 80°C (-22°F to 176°F). However, for applications with higher temperatures, specialized high-temperature belts made from materials like silicone or EPDM (ethylene propylene diene monomer) can be used, which can withstand temperatures up to 150°C (302°F) or even higher.

  3. Heat Dissipation:
  4. In high-temperature environments, heat dissipation becomes crucial to prevent belt degradation. Adequate ventilation and cooling measures should be in place to dissipate heat generated during belt operation. This can help maintain the integrity of the belt material and prevent premature wear or failure.

  5. Humidity and Moisture:
  6. V-belts can generally tolerate moderate levels of humidity and moisture. However, in environments with high humidity or exposure to water, it is important to select belts with moisture-resistant properties. Some V-belts come with special coatings or treatments that enhance their resistance to moisture, preventing swelling, deterioration, or loss of strength.

  7. Chemical Resistance:
  8. In certain high-temperature or high-humidity environments, there might be exposure to chemicals or contaminants. It is crucial to choose V-belt materials that are resistant to the specific chemicals present in the environment. Chemical-resistant belts, such as those made from materials like polyurethane or fluorocarbon elastomers, can withstand the effects of chemicals and maintain their performance.

  9. Regular Inspections and Maintenance:
  10. In any environment, but especially in high-temperature or high-humidity conditions, regular inspections and maintenance are essential. Periodic checks for signs of wear, cracking, glazing, or other forms of belt deterioration should be conducted. Prompt replacement of worn-out or damaged belts will help prevent unexpected failures and minimize downtime.

By considering these factors and selecting V-belts specifically designed for high-temperature or high-humidity environments, you can ensure proper performance, longevity, and reliability in such operating conditions.

v belt

What are the key differences between V-belts and other types of power transmission belts?

V-belts are a popular type of power transmission belts, but they differ from other types of belts in terms of design, construction, and specific applications. Here are the key differences:

1. Belt Profile:

V-belts have a trapezoidal or V-shaped cross-sectional profile, which gives them their name. This profile allows the belts to fit securely into V-shaped pulleys, providing effective power transmission and grip. Other types of belts, such as flat belts or timing belts, have different profiles suited for specific applications.

2. Power Transmission Method:

V-belts transmit power through frictional forces between the belt and the pulleys. As the belt wraps around the pulleys, the friction between the belt and the pulley surfaces allows the transfer of torque and power. In contrast, other belts, like timing belts or chain drives, use toothed profiles or interlocking mechanisms to transmit power, providing precise synchronization and higher torque transmission.

3. Load Capacity:

V-belts are designed to handle moderate to high loads, making them suitable for a wide range of applications. However, certain applications with heavier loads may require specialized heavy-duty V-belts or alternative belt types, such as synchronous belts or chain drives, which offer higher load-carrying capacities.

4. Speed Range:

V-belts are suitable for a broad speed range, but their limitations may vary depending on the specific design, material, and construction. Traditional V-belts may have speed limitations at extremely high speeds due to centrifugal forces and heat generation. High-speed V-belts or narrow V-belts are available for applications that require higher speeds. In contrast, timing belts and synchronous belts are designed for precise speed control and are commonly used in applications with strict speed requirements.

5. Tensioning and Maintenance:

V-belts require periodic tensioning to maintain proper grip and power transmission efficiency. Tensioning is typically achieved through manual adjustment or automatic tensioners. Other types of belts, such as timing belts or chain drives, often have fixed tensioning systems and require less frequent maintenance.

6. Noise and Vibration:

V-belts generally operate with lower noise and vibration levels compared to other types of belts, such as chain drives. The design and frictional nature of V-belts contribute to smoother operation and reduced noise generation, making them suitable for applications where noise and vibration control is important.

7. Applications:

V-belts are widely used in various applications, including industrial machinery, automotive systems, HVAC systems, and power transmission in general. They are versatile and can accommodate different power requirements. Other belt types, such as timing belts, are commonly used in precision positioning, robotics, or applications that require synchronous motion.

Overall, V-belts offer reliable and cost-effective power transmission for a wide range of applications. However, the selection of the appropriate belt type depends on factors such as load requirements, speed range, precision, noise considerations, and specific application needs.

v belt

What is a V-belt and how does it work?

A V-belt, also known as a Vee belt or a wedge belt, is a type of power transmission belt that is commonly used in various industrial applications. It is called a V-belt because of its trapezoidal cross-sectional shape, resembling the letter “V.”

The primary purpose of a V-belt is to transmit power between two rotating shafts. It does this by wrapping around the pulleys or sheaves on the shafts and creating frictional forces between the belt and the pulleys. The friction generated between the belt and the pulleys allows the belt to transfer torque from the driving pulley to the driven pulley.

The V-belt’s design provides several advantages for power transmission:

  1. High friction: The V-shaped cross-section of the belt increases the contact area with the pulleys, resulting in high frictional forces. This allows for effective power transmission even in applications with high torque or heavy loads.
  2. Belt wedging: When the V-belt is tensioned, it wedges itself deeper into the pulley grooves, enhancing the friction and preventing slippage between the belt and the pulleys. This feature is especially useful in applications where the driven pulley needs to rotate at a different speed than the driving pulley.
  3. Quiet operation: V-belts generally operate with less noise compared to other types of belts, such as flat belts. The V-shaped design helps to reduce vibrations and noise levels during power transmission.
  4. Simple installation: V-belts are relatively easy to install and replace. They can be quickly mounted on the pulleys without requiring extensive alignment procedures.

However, it’s important to note that V-belts have limitations as well. They are not suitable for applications that require precise speed control or when high-speed ratios are needed. In such cases, other power transmission methods like gear systems or synchronous belts may be more appropriate.

In summary, V-belts are commonly used power transmission belts that utilize frictional forces to transfer torque between rotating shafts. Their V-shaped design and high friction characteristics make them effective for various industrial applications.

China wholesaler Wrapped Banded Rubber Industrial Auto Motorcycle Transmission Synchronous Tooth Drive Ribbed Timing Poly Automotive Power V Belt   axle cv jointChina wholesaler Wrapped Banded Rubber Industrial Auto Motorcycle Transmission Synchronous Tooth Drive Ribbed Timing Poly Automotive Power V Belt   axle cv joint
editor by CX 2024-05-10

v belt

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