China Custom Ep400 Chevron Conveyor V Belt in Qingdao axle bolt

Product Description

         Chevron ribbed conveyor belt factory conveyor belt        

Chevron Conveyor Belts are precision designed and developed for providing desired space-saving on steep inclines which can go up to 40 Degrees. In such situations, these conveyor belts are designed to deliver enhanced load carrying capacity in bulk with lump size of up to 150mm.

Belt types

♦ Types: Open V, Closed-V, L type, H type, Y type, A type and F type, etc.

♦ Width: 400MM-1200MM

♦ Thickness: 4-50mm

♦ Types: EP80-EP630

♦ Feature: Good adhesion and long working life

Chevron Pattern Conveyor Belt Features 
1. Excellent elasticity 
2. Anti-impact 
3. High-adhesion 
4. Good flexibility 
5. Trough ability 
6. Better stability of size 
7. Resistance to water 
8. Heat resistance in comparison to NN belt 

Advantage :
Some of the standard features of these conveyor belts include:
For meeting the demands of high capacity conveying at steep angles
Designed to prevent load slippage or roll back of products while conveying
Comes with cleats that are integrally molded with top cover rubber that prevents separation from belt
Cleats also helping in achieving high abrasion resistance as well as elastic rubber compounds for desired flexibility
Can be offered in different cleat heights as well as widths depending on application requirements
Can be made available in varied finish design specifications
Following precision design standards that ensure belt has smooth run on conventional return idlers, thus needing no conveyor modification
Belting support provided allowing smooth transition from conventional flat belt to Chevron Conveyor Belts
Can be manufactured in all cover grades including abrasion resistant M24, HR, OR, FR
Available in white finish that helps in maintaining better hygiene standards
Application Areas:
Some of the areas of application include for meeting the transportation demands of:

Wood Chips Sand & Gravel
Heavy Duty Scrap metal Minerals – Coal & Ore
Materials – Fine Coal & Grains Waste & Recycling Plants
Road Construction Crushing Industries
Bagged Materials Steel Pellets

Selections:
Selection the type and height of cleats depends on the material to be conveyed and the angle of inclination:

Type of material Material example Max. angle of inclination
Height of cleats
H(mm):
14
H(mm):
16
H(mm):
25
H(mm):
32
Powdery Flour, etc. 25° 25° 28° 30°
Loose flowing Corn, barley, wheat, rye, etc. 20/25° 20/25° 25/30° 25/30°
Loose rolling Gravel, ground stone, etc. 25° 25° 28° 30°
Sticky Wet sand, ash, wet loam, etc. 30° 30/35° 35/40° 40/45°
Packed Sacks, paper sacks, etc. 30/35° 30/35° 35/40° 35/40°

 
Cleat pattern ranges

1. Conveyor belts with Close V type profiles

2.Conveyor belts with U type profiles

3.Conveyor belts with Y type profiles

4.Conveyor belts with G type profiles

Picture

 
Shipping:

Certificate:

 
FAQ:
(1)Q: Are you a factory or trading company
A: We are factory with export license. We have the most convenient transportation conditions.
(2)Q: Do you offer samples?
A: We are glad to offer you free samples. New clients are expected to pay for the delivery cost,this charge will be deducted from the payment for formal order.
(3)Q: How about the lead time?
A: Within10-20 days after getting the prepayment or L/C.
(4)Q: How can we pay?
A: For small sample shipping cost, you can pay either by paypal or by T/T.  And by T/T or L/C at sight for large amount of the order.
(5)Q: Can you do CO, Form E, Form F, Form A etc? 
A: Yes, we can do them for you.
Welcome to visit our web: qdbothwin  for more conveyor belt and rubber sheet information. 
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Type: EP200
Material: Rubber
Inside Material: Fabric
Feature: Oil-Resistant, Acid And Alkali Resistant, Tear-Resistant, Heat-Resistant, Cold-Resistant
Tensile Strength: Strong
Tensile: 10-25MPa
Samples:
US$ 50/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

v belt

Are there any alternatives to V-belts for power transmission applications?

Yes, there are several alternatives to V-belts for power transmission applications. These alternatives offer different advantages and may be suitable for specific requirements. Here are some commonly used alternatives:

  1. Synchronous Belts:
  2. Synchronous belts, also known as timing belts, are toothed belts that provide precise and synchronous power transmission. They have teeth on the inner side that mesh with corresponding grooves on the pulleys, eliminating slippage and ensuring accurate power transfer. Synchronous belts are commonly used in applications that require precise positioning, high torque transmission, or low maintenance.

  3. Flat Belts:
  4. Flat belts are thin, flexible belts that transmit power by friction between the belt and the pulleys. They offer a simple and cost-effective solution for power transmission. Flat belts are available in various materials, such as rubber, leather, or fabric-reinforced synthetic materials. They are suitable for applications with moderate power requirements and can be used in both light-duty and heavy-duty applications.

  5. V-Ribbed Belts:
  6. V-ribbed belts, also known as multi-rib belts or serpentine belts, are similar to V-belts but have a different cross-sectional shape. They have a flat or shallow V-shaped profile with ribs on the inner side, which engage with corresponding grooves on the pulleys. V-ribbed belts offer higher power transmission capacity and reduced slip compared to standard V-belts. They are commonly used in automotive applications, such as engine accessory drives.

  7. Chain Drives:
  8. Chain drives use a series of interconnected links to transmit power. They are known for their high strength, durability, and ability to handle heavy loads. Chain drives are commonly used in applications that require high torque transmission, such as industrial machinery, motorcycles, or bicycles. However, chain drives require periodic lubrication and maintenance to ensure proper operation.

  9. Gear Drives:
  10. Gear drives utilize interlocking gears to transmit power. They offer high efficiency, precise power transmission, and the ability to transmit large amounts of torque. Gear drives are commonly used in applications that require high precision, such as robotics, machine tools, or automotive transmissions. However, they can be more complex and expensive compared to belt drives.

  11. Direct Coupling:
  12. In some cases, power transmission applications may utilize direct coupling, where the motor shaft is directly connected to the driven equipment without the use of belts or other intermediate components. Direct coupling offers high efficiency, compactness, and eliminates the need for belt maintenance. It is commonly used in applications with high torque requirements or where precise alignment is critical.

The choice of the alternative to V-belts depends on various factors, including the specific power transmission requirements, space limitations, cost considerations, maintenance needs, and the desired level of precision. It is important to evaluate these factors and consult with experts to select the most suitable alternative for a particular application.

v belt

What are the factors that affect the lifespan and efficiency of V-belts?

The lifespan and efficiency of V-belts can be influenced by several factors. Here are the key factors that can affect the performance of V-belts:

  1. Belt Tension:
  2. Proper belt tension is crucial for the longevity and efficiency of V-belts. Insufficient tension can cause slippage, while excessive tension can lead to excessive load on the belt and other components. It is important to follow the manufacturer’s recommendations for the correct tension range.

  3. Belt Alignment:
  4. Poor belt alignment can cause uneven wear, increased friction, and reduced efficiency. Misaligned pulleys can cause the belt to run at an angle, resulting in premature wear and potential failure. Regularly check and adjust the alignment of pulleys to ensure proper belt tracking.

  5. Belt Condition:
  6. The condition of the V-belt itself is a significant factor in its lifespan and efficiency. Regularly inspect the belt for signs of wear, cracks, fraying, or glazing. Replace worn-out or damaged belts promptly to avoid further issues.

  7. Maintenance and Lubrication:
  8. Proper maintenance and lubrication can significantly extend the lifespan of V-belts. Adequate lubrication reduces friction and heat buildup, which helps to prevent premature wear and cracking. Follow the manufacturer’s recommendations for lubrication intervals and use the appropriate lubricant.

  9. Operating Conditions:
  10. Operating conditions, such as temperature, humidity, and exposure to chemicals or contaminants, can affect the performance of V-belts. Extreme temperatures can cause the belt material to deteriorate, while exposure to chemicals or contaminants can lead to belt degradation. Ensure that the operating conditions are within the recommended range for the specific V-belt.

  11. Load and Application:
  12. The load and application requirements also impact the lifespan and efficiency of V-belts. Excessive loads or improper application can cause excessive stress on the belt, leading to premature failure. Ensure that the V-belt is appropriately sized and rated for the specific load and application.

By considering these factors and implementing proper maintenance practices, such as regular inspections, correct tensioning, alignment checks, and appropriate lubrication, you can maximize the lifespan and efficiency of V-belts in your applications.

v belt

What are the advantages of using V-belts in power transmission systems?

V-belts offer several advantages when used in power transmission systems:

  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.
  5. Cost-effective: V-belts are typically more affordable compared to other power transmission methods, such as gear systems or synchronous belts. This makes them a cost-effective choice for many applications.
  6. Flexibility: V-belts can accommodate misalignments and slight variations in pulley diameters. They can also operate in a wide range of temperature and humidity conditions, making them versatile for different environments.
  7. Energy efficiency: V-belts have relatively low energy losses during power transmission, resulting in efficient energy transfer between the driving and driven pulleys.

It’s important to note that while V-belts offer numerous advantages, they also have limitations. 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 may be more appropriate.

In conclusion, the advantages of using V-belts in power transmission systems include high friction, belt wedging, quiet operation, simple installation, cost-effectiveness, flexibility, and energy efficiency.

China Custom Ep400 Chevron Conveyor V Belt in Qingdao   axle boltChina Custom Ep400 Chevron Conveyor V Belt in Qingdao   axle bolt
editor by CX 2024-03-28

TAGs:belt | v belt

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