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China factory CZPT Higher Energy Efficiency Cogged V Belt wheel and axle

Product Description

Company History
We are a professional agriculture and auto machine drive belt manufacture.
Established in 1995.In china,we have very complete R&D,manufacture,sales,service.
In 1995,Started production of automotive drive belt.(toothed V-belts,V-ribbed belts)
In 1999,We moved to Xihu (West Lake) Dis. county
In 2008,Moved to Xihu (West Lake) Dis. Industrial part.Increase the production of rubber shock absorbing products and sealing products.
In 2014,Developed agricultural machinery toothed belts and applied EPDM material for the first time.
In 2017,A large number of agricultural machinery toothed belts have been put into the market and cooperated with a number of OEM orders.
In 2019,The new plant covering an area of 136 acres put into use.
In 2571,Up to 12 toothed belt production lines.

Factory Gate Product manufacture availability:We have thousands of pattern in full size,can meet our customer’s different demands.

Our Team

 

Our Product

Click here to send us inquiry directly


Specification of V Belt

Model
 
Top Width(mm) Thickness(mm) Length Range(inch) Length Range(mm) Angle
O/AV10* 10 8.5 19.68″-216.5″ 500-12000 40°
A/AV13* 13 9.5 19.68″-216.5″ 500-12000 40°
B/AV17* 17 14 19.68″-216.5″ 500-12000 40°
C/AV22* 22 19 19.68″-216.5″ 500-12000 40°
SAx/LAx 12.5 8.8 19.68″-216.5″ 500-12000 38°
SBx/LBx 16.2 10 19.68″-216.5″ 500-12000 38°
SCx/LCx 21 11.2 19.68″-216.5″ 500-12000 40°
XPA/SPAX 12.5 10 19.68″-216.5″ 500-12000 40°
XPB/SPBX/5V 16.2 13 19.68″-216.5″ 500-12000 40°
XPC/SPCX 21 15 19.68″-216.5″ 500-12000 40°
XPZ/SPZX/3V 9.5 8.8 19.68″-216.5″ 500-12000 40°
25N/8V 25 17 19.68″-216.5″ 500-12000 40°
HI 25 13 19.68″-216.5″ 500-12000 32°
HJ/HDJ 32 18 19.68″-216.5″ 500-12000 32°
HD 32 18 19.68″-216.5″ 500-12000 40°
HK 38 20 19.68″-216.5″ 500-12000 32°
HL 45 24 19.68″-216.5″ 500-12000 32°
HM 51 25.5 19.68″-216.5″ 500-12000 32°
HN 57 26 19.68″-216.5″ 500-12000 32°
HO 63 26 19.68″-216.5″ 500-12000 32°
9J-5 50.1 11 19.68″-216.5″ 500-12000 40°
9J-6 60.4 11 19.68″-216.5″ 500-12000 40°
9J-7 70.7 11 19.68″-216.5″ 500-12000 40°
3R-5V 50 15.2 19.68″-216.5″ 500-12000 40°
4R-5V 67.5 15.2 19.68″-216.5″ 500-12000 40°
4R-SPA 60.8 11 19.68″-216.5″ 500-12000 38°
2HB 35 14 19.68″-216.5″ 500-12000 38°
3HB 54 14 19.68″-216.5″ 500-12000 38°
4HB 72.5 14 19.68″-216.5″ 500-12000 38°
5HB 91 14 19.68″-216.5″ 500-12000 38°
6HB 110 14 19.68″-216.5″ 500-12000 38°
2HC 47.5 16 19.68″-216.5″ 500-12000 38°
3HC 72.5 16 19.68″-216.5″ 500-12000 38°
4HC 98 16 19.68″-216.5″ 500-12000 38°

Other special sizes v belts(such as 36*,45*,68*), banded v belts, flat belts and PK, DPK, PJ, PL,AA,BB,CC Belts are also available, if you have any need of them, please feel free to contact us. We will confirm all the details and reply you within 24 hours.

Structure of V Belt

  Function Material
Tension
Member
The treated polyester cord is a low stretch high
strength tension member CZPT to withstand shock
loads on drives with fixed centers
Polyester/Aramid Fiber
Rubber
Ribs/Teeth
Long wearing, oil resistant, fibre-loaded neoprene
rubber is used in the CZPT to provide support for the
tension member and to transmit the loads to the pulley
EPDM
Backing
Material
Bias ply type fabric backing resists cracking and
provides abrasion resistance
EPDM
Insulation
Material
oil and heat resistant rubber is used to CZPT the
tension member to the rest of the belt
EPDM

Teeth part also can be covered with Fabric, if you have any need of it, please do tell us when you placing the order.

Application

Company Introduction
ZheJiang Heiyi Rubber Co.,Ltd
Located in a historical and cultural city-ZheJiang Xihu (West Lake) Dis..The company now covers an area of 136 acres,building area of 66000 square meters,more than 180 employees.
Integrating R&D,production,and sales.Advanced production technology,excellent production equipment strong technical force.
Production in strict accordance with ISO16949 quality management system.
We have exquiste sales and logistic team in 31 province in china.Also our product had exported to India, Pakistan, Vitnam, Sinapore, Thailand, Germany, Poland, Russia, Australia, Brazil.

Heiyi Test Center

Certification
Honorary qualification of HEIYI rubber co.,ltd.
2011-Advanced work unit
2011-Famous trademark enterprise of HangZhou City
2012-Famous trademark of ZheJiang Province
2012-Member of China Rubber Industry Association
2013-ZheJiang Province SME brand-name products
2015-Petroleum and chemical enterprise quality inspection Grade A
2017-ZheJiang famous brand products
2017-ZheJiang Province quality products.
2017-High tech enterprise
2018 ZheJiang province industrial enterprise R&D Organization Grade C.
2018-ISO16949 certification.
Package&Delivery


Our Partner

Company: ZheJiang Heiyi Rubber Co., Ltd
Add: Xihu (West Lake) Dis. County Industrial Park, HangZhou City, ZheJiang Province,China /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Standard or Nonstandard: Standard
Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Mining Equipment, Agricultural Machinery, Car
Feature: Anti-Static, Cold-Resistant, Heat-Resistant, Skid-Resistance, Wear-Resistant, High Temperature-Resistance
Samples:
US$ 0/Piece
1 Piece(Min.Order)

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Order Sample

Customization:
Available

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Customized Request

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

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Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

v belt

How do you calculate the power rating and speed capacity of a V-belt system?

Calculating the power rating and speed capacity of a V-belt system involves considering various factors such as belt type, pulley dimensions, belt tension, and speed. Here’s a general overview of the calculations involved:

  1. Power Rating Calculation:
  2. To calculate the power rating of a V-belt system, you need to determine the maximum power that the belt can transmit without slipping or experiencing excessive wear. The power rating is typically expressed in horsepower (HP) or kilowatts (kW).

    The formula for calculating the power rating is:

     Power (HP or kW) = (Tension in belt (lb or N) * Belt speed (ft/min or m/s)) / 33,000 (for HP) or 1,000 (for kW) 

    The tension in the belt can be determined based on the design requirements of the system and is influenced by factors such as the type of application and the desired safety factor.

  3. Speed Capacity Calculation:
  4. The speed capacity of a V-belt system is the maximum rotational speed at which the belt can operate without experiencing excessive vibration or failure. It is typically expressed in revolutions per minute (RPM).

    The formula for calculating the speed capacity is:

     Speed (RPM) = (Belt pitch diameter (in or mm) * π * Belt speed (ft/min or m/s)) / 12 (for in) or 1000 (for mm) 

    The belt pitch diameter is determined based on the pulley dimensions and is the effective diameter at which the belt engages with the pulley.

It’s important to note that these calculations provide general guidelines, and actual power rating and speed capacity may vary depending on the specific belt and pulley design, as well as other factors such as belt tensioning, environmental conditions, and system efficiency. It is recommended to consult the belt manufacturer’s guidelines or seek assistance from an engineer experienced in power transmission systems to ensure accurate calculations and appropriate belt selection for a given application.

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 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 factory CZPT Higher Energy Efficiency Cogged V Belt   wheel and axleChina factory CZPT Higher Energy Efficiency Cogged V Belt   wheel and axle
editor by CX 2023-12-22

v belt

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