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China Standard 3290142X V Ribbed Belt Actuator Crankshaft Gear Breather Piston Main Bearing Injector Gasket Lubricating Oil Pump Thermostat Nozzle Belt for CZPT car axle

Product Description

Product Description

Key Words:  Cummins  Engine V Ribbed Belt 3290142X
Part Name: Cummins Engine  V Ribbed Belt
Part No.: 3290142X
Applied Engine:  M11 QSM11 ISM11
Brand: Cummins 
Origin:  China
Weight:  0.23KG 
Size 16*16*3cm

 

Detailed Photos

Packaging & Shipping

Installation Instructions

Company Profile

  • Established in 2571, ZheJiang HONOR INDUSTRIAL CO.,LTD. has import and export rights. Our company fully supplies customers with genuine CZPT spare parts, including fuel systems, cooling systems, lubrication systems, intake and exhaust systems, power systems. Products are widely used in mining, construction engineering, oil field, highway, CZPT and other fields.

Our company also produces various types of rotary CZPT picks, road milling picks, coal mining picks. We have domestic advanced vacuum brazing equipment, top-level robot equipment for robotic arm series joint, and nanotechnology spraying equipment, which can effectively ensure reliable and stable product quality. So as to create a high-end pick product that makes customers more assured and more practical. Products are widely used in highway construction, railway construction, housing construction and other industries.

Our company has a strong technical team, with top technology, rich production experience, sophisticated production equipment, advanced production process, scientific management system and high-quality after-sales service, continuing to grow and develop. “Persistence is belief, integrity is character” is our principle of action, the company will be committed to serving customers at home and a broad with high-quality products and reasonable prices for a long time.

Our Advantages

Price: When ordering in large quantities, the price is guaranteed to be the most competitive on the entire network.
Quality: Genuine parts, fake 1 loses ten.
Delivery time: In order to meet customer needs, our company reserves different models of genuine CZPT spare parts inventory. No matter when and where customers have demand for CZPT engine parts, we can respond quickly, except for some infrequently used parts.

FAQ

Q1: How much is the MOQ?
A: MOQ varies for different products.

Q2: Do you provide sample?
A: Samples can be provided and the cost of ordering samples shall be borne by yourself.

Q3: What is the shipping way?
A: Shipping way is determined according to customer needs, order quantity and product category.
 
Q4: How long is the delivery time?
A: Picking spot. CZPT products according to supplier, most of the spot or production cycle is about 7 days. The shipping cycle is determined by the shipping method.

Q5: What does the packaging look like?
A: CZPT product packaging is determined by mutual negotiation. The packaging of the picks is subject to our company.

Q6: How to pay?
A: Multiple ways. Mainly T/T.

Q7: What is the after-sales guarantee?
A: Abnormal damage can be claimed. Our company continues to provide technical advice.

Cummins Engine Parts
ZheJiang Honor Company can provide you with pure and high-quality CZPT engine parts of various models. Parts are divided into overhaul parts, common parts, kits, etc. We have a professional and experienced technical service and sales team. According to the engine model you provide, part name or part number, we will be CZPT to respond quickly to your needs.
Cummins common parts

Common parts refer to the parts that may need to be replaced due to damage during routine maintenance or during engine work.

 

3290142X V Ribbed Belt Actuator Crankshaft Gear Breather Piston Main Bearing Injector  Gasket Lubricating Oil Pump Thermostat Nozzle Belt for CZPT /* 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

Certification: ISO9001, E-Mark, RoHS, TS16949
Standard Component: Standard Component
Technics: Push
Material: Iron
Type: Belt
for: Cummins Engine
Customization:
Available

|

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

Can V-belts be used in high-speed or heavy-duty applications?

V-belts are versatile power transmission belts that can be used in a wide range of applications, including high-speed and heavy-duty applications, depending on the specific design, construction, and material of the V-belt. Here’s a detailed explanation:

High-speed applications:

V-belts are capable of transmitting power efficiently at various speeds. However, the speed limitations of V-belts depend on factors such as the belt’s design, material, and construction. Traditional V-belts, also known as classical V-belts, are generally suitable for moderate to high-speed applications but may have limitations at extremely high speeds due to centrifugal forces and heat generation.

For high-speed applications, specialized V-belt designs, such as high-speed V-belts or narrow V-belts, are available. These belts are designed to reduce heat buildup and minimize the effects of centrifugal forces, allowing them to operate effectively at higher speeds. It is important to consult the manufacturer’s specifications and recommendations to select the appropriate V-belt for high-speed applications.

Heavy-duty applications:

V-belts can also be used in heavy-duty applications that require the transmission of high torque or power. Heavy-duty V-belts, also known as industrial or agricultural V-belts, are specifically designed to handle heavy loads and provide reliable power transmission in demanding conditions.

Heavy-duty V-belts are constructed using reinforced materials, such as strong fabric layers or aramid cords, to enhance strength and durability. These belts are designed to resist stretching, withstand high loads, and operate in environments with high temperatures, humidity, or exposure to chemicals.

In addition to heavy-duty V-belts, there are other belt options available for heavy-duty applications, such as cogged V-belts and synchronous belts. These belts feature specialized designs and toothed profiles that offer increased power transmission capabilities, improved grip, and enhanced resistance to slip.

When considering the use of V-belts in high-speed or heavy-duty applications, it is crucial to consult the manufacturer’s specifications, guidelines, and application recommendations. The manufacturer can provide information on the suitable V-belt types, sizes, and materials that can withstand the specific demands of the application.

Overall, V-belts can be used effectively in high-speed and heavy-duty applications, provided the appropriate type, design, and construction are selected based on the application requirements and manufacturer’s recommendations.

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 Standard 3290142X V Ribbed Belt Actuator Crankshaft Gear Breather Piston Main Bearing Injector Gasket Lubricating Oil Pump Thermostat Nozzle Belt for CZPT   car axleChina Standard 3290142X V Ribbed Belt Actuator Crankshaft Gear Breather Piston Main Bearing Injector Gasket Lubricating Oil Pump Thermostat Nozzle Belt for CZPT   car axle
editor by CX 2024-05-14

China Standard for Scania 1860734 1734903 Tensioner Pulley, V-Ribbed Belt axle bearing

Product Description

SCANIA 186571 1734903 Tensioner Pulley, v-ribbed belt

OEM:186571 1734903

REF NO.: APV2730 FEBI 35634 DT 1.11410

SIZE:74*39

APPLICATION: SCANIA P,G,R,T – series (2 1734903   Application   SCANIA

Place of Origin

ZHangZhoug, China

Material

  Aluminium   Product Name

Tensioner Pulley

Reference NO.

 

Packing

Neutral Packing

SHIPPING TERM

Sea/Air

Quality

100%tested

Size

same as OEM

/* 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

After-sales Service: 1 Year
Warranty: 1 Year
Certification: CCC, ISO9001, TS16949
Samples:
US$ 30/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

|

Customized Request

.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



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

v belt

What are the best practices for storing spare V-belts to maintain their quality?

Proper storage of spare V-belts is essential to maintain their quality and ensure their performance when they are needed. Here are some best practices for storing spare V-belts:

  1. Clean and Dry Environment:
  2. Store the V-belts in a clean and dry environment to prevent contamination and moisture damage. Avoid storing them in areas where they may be exposed to dirt, dust, chemicals, or excessive humidity. Keeping the storage area clean and well-ventilated helps preserve the integrity of the belts.

  3. Temperature and Humidity Control:
  4. Ensure that the storage area has controlled temperature and humidity levels. Extreme temperatures or high humidity can adversely affect the belt material, leading to deterioration or loss of elasticity. Ideally, the temperature should be kept within a range of 10°C to 30°C (50°F to 86°F), and the humidity should be maintained at around 40% to 70%.

  5. Avoid Direct Sunlight:
  6. Direct exposure to sunlight can cause the belt material to degrade over time. Store the spare V-belts away from direct sunlight or any other sources of ultraviolet (UV) radiation. If possible, use opaque containers or covers to shield the belts from light.

  7. Avoid Bending or Twisting:
  8. Do not store the V-belts in a way that causes excessive bending or twisting. This can result in permanent deformation or stress on the belts, compromising their performance. Keep the belts flat or hang them in a manner that maintains their original shape.

  9. Proper Packaging:
  10. If the V-belts are stored in packaging, ensure that the packaging is intact and provides adequate protection against external elements. Avoid storing the belts in damaged or torn packaging, as it may expose them to contaminants or moisture.

  11. First-In-First-Out (FIFO) Rotation:
  12. Implement a first-in-first-out (FIFO) rotation system for spare V-belts. This means using the oldest belts first and replenishing the stock with newly purchased belts. This practice helps prevent the storage of belts for extended periods, reducing the risk of degradation or obsolescence.

  13. Regular Inspections:
  14. Periodically inspect the stored V-belts for any signs of damage, such as cracks, brittleness, or deterioration. If any issues are detected, replace the affected belts promptly to ensure that only high-quality spare belts are available for use when needed.

By following these best practices, you can maintain the quality and performance of spare V-belts, ensuring that they are ready for use and prolonging their service life.

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

How do you measure and select the right size of V-belt for a specific application?

When selecting the right size of V-belt for a specific application, it is important to consider factors such as the pulley diameters, center distance between the pulleys, power requirements, and the desired operating speed. Here is a step-by-step guide on how to measure and select the appropriate V-belt size:

  1. Identify the pulley diameters: Measure the diameter of both the driving and driven pulleys. Make sure to measure the diameter at the highest point of the pulley groove where the belt rides.
  2. Determine the center distance: Measure the distance between the center points of the driving and driven pulleys. This is the center distance and it plays a crucial role in determining the appropriate V-belt length.
  3. Calculate the pitch diameter: The pitch diameter is the effective diameter where the belt contacts the pulley. It can be calculated using the following formula: Pitch Diameter = (Driving Pulley Diameter + Driven Pulley Diameter) / 2.
  4. Consider the power requirements: Determine the amount of power that needs to be transmitted by the V-belt. This can be in the form of horsepower (HP) or kilowatts (kW). Refer to the manufacturer’s guidelines or engineering specifications to ensure the selected V-belt can handle the required power.
  5. Choose the appropriate V-belt type: Based on the calculated pitch diameter, center distance, and power requirements, select the type of V-belt that is suitable for the specific application. Consider factors such as load capacity, speed capability, and environmental conditions.
  6. Refer to V-belt manufacturer’s catalogs: Consult the manufacturer’s catalogs or online resources to find the available V-belt sizes and corresponding part numbers. Cross-reference the calculated parameters with the provided charts or tables to identify the appropriate V-belt size.
  7. Verify the selection: Double-check the selected V-belt size against the calculated parameters to ensure accuracy. If possible, consult with a technical expert or the manufacturer’s support team to validate the selection.

It is important to note that V-belt sizes are standardized and typically follow specific designations, such as the Classical V-belt designation (e.g., A, B, C, D) or the metric designation (e.g., SPZ, SPA, SPB, SPC). These designations indicate different belt widths and lengths.

In summary, measuring and selecting the right size of V-belt for a specific application involves identifying the pulley diameters, determining the center distance, calculating the pitch diameter, considering the power requirements, choosing the appropriate V-belt type, referring to manufacturer’s catalogs, and verifying the selection. Following these steps will help ensure the proper functioning and longevity of the V-belt in the intended application.

China Standard for Scania 1860734 1734903 Tensioner Pulley, V-Ribbed Belt   axle bearingChina Standard for Scania 1860734 1734903 Tensioner Pulley, V-Ribbed Belt   axle bearing
editor by CX 2024-05-09

China high quality V Belt Pulley Groove Bearing Cast Iron Wheel Pulley with ISO9001 (SPA, SPB, SPC, SPZ) pulley drive

Product Description

V Belt Pulley with ISO9001 (SPA, SPB, SPC, SPZ)

1. V-Pulley
Taper Bore
SPZ SPA CHINAMFG SPC
2. V-Pulley
Stock Bore
SPZ SPA CHINAMFG SPC
3. V-Pulley
Adjustable Speed
TB-1 TB-2 SB-1 SB-2
4. V-Pulley
Multi-Wedged
J L M

 

50 – 1 x SPZ – 1008 rü 15 Taper-v-belt pulley
56 – 1 x SPZ – 1008 rü 15 Taper-v-belt pulley
60 – 1 x SPZ – 1008 bü Taper-v-belt pulley
63 – 1 x SPZ – 1108 bü Taper-v-belt pulley
67 – 1 x SPZ – 1108 bü Taper-v-belt pulley
71 – 1 x SPZ – 1108 bü Taper-v-belt pulley
75 – 1 x SPZ – 1108 bü Taper-v-belt pulley
80 – 1 x SPZ – 1210 bü Taper-v-belt pulley
85 – 1 x SPZ – 1210 bü Taper-v-belt pulley
90 – 1 x SPZ – 1210 bü Taper-v-belt pulley
95 – 1 x SPZ – 1210 bü Taper-v-belt pulley
100 – 1 x SPZ – 1210 bü Taper-v-belt pulley
106 – 1 x SPZ – 1610 bü Taper-v-belt pulley
112 – 1 x SPZ – 1610 bü Taper-v-belt pulley
118 – 1 x SPZ – 1610 bü Taper-v-belt pulley
125 – 1 x SPZ – 1610 bü Taper-v-belt pulley
132 – 1 x SPZ – 1610 bü Taper-v-belt pulley
140 – 1 x SPZ – 1610 bü Taper-v-belt pulley
150 – 1 x SPZ – 1610 bü Taper-v-belt pulley
160 – 1 x SPZ – 1610 bü Taper-v-belt pulley
170 – 1 x SPZ – 1610 bü Taper-v-belt pulley
180 – 1 x SPZ – 1610 bü Taper-v-belt pulley
190 – 1 x SPZ – 2012 bü Taper-v-belt pulley
200 – 1 x SPZ – 2012 bü Taper-v-belt pulley
224 – 1 x SPZ – 2012 bü Taper-v-belt pulley
250 – 1 x SPZ – 2012 bü Taper-v-belt pulley
280 – 1 x SPZ – 2012 bü Taper-v-belt pulley
315 – 1 x SPZ – 2012 bü Taper-v-belt pulley
355 – 1 x SPZ – 2012 bü Taper-v-belt pulley
400 – 1 x SPZ – 2012 bü Taper-v-belt pulley
500 – 1 x SPZ – 2517 Taper-v-belt pulley
50 – 2 x SPZ – 1008 rü 26 Taper-v-belt pulley
56 – 2 x SPZ – 1108 rü 26 Taper-v-belt pulley
60 – 2 x SPZ – 1108 rü 26 Taper-v-belt pulley
63 – 2 x SPZ – 1108 bü Taper-v-belt pulley
67 – 2 x SPZ – 1108 bü Taper-v-belt pulley
71 – 2 x SPZ – 1108 Taper-v-belt pulley
75 – 2 x SPZ – 1210 bü Taper-v-belt pulley
80 – 2 x SPZ – 1210 bü Taper-v-belt pulley
85 – 2 x SPZ – 1610 bü Taper-v-belt pulley
90 – 2 x SPZ – 1610 bü Taper-v-belt pulley
95 – 2 x SPZ – 1610 bü Taper-v-belt pulley
100 – 2 x SPZ – 1610 bü Taper-v-belt pulley
106 – 2 x SPZ – 1610 bü Taper-v-belt pulley
112 – 2 x SPZ – 1610 bü Taper-v-belt pulley
118 – 2 x SPZ – 1610 bü Taper-v-belt pulley
125 – 2 x SPZ – 1610 bü Taper-v-belt pulley
132 – 2 x SPZ – 1610 bü Taper-v-belt pulley
140 – 2 x SPZ – 1610 bü Taper-v-belt pulley
150 – 2 x SPZ – 2012 bü Taper-v-belt pulley
160 – 2 x SPZ – 2012 bü Taper-v-belt pulley
170 – 2 x SPZ – 2012 bü Taper-v-belt pulley
180 – 2 x SPZ – 2012 bü Taper-v-belt pulley
190 – 2 x SPZ – 2012 bü Taper-v-belt pulley
200 – 2 x SPZ – 2012 bü Taper-v-belt pulley
224 – 2 x SPZ – 2012 bü Taper-v-belt pulley
250 – 2 x SPZ – 2012 bü Taper-v-belt pulley
280 – 2 x SPZ – 2012 bü Taper-v-belt pulley
315 – 2 x SPZ – 2012 bü Taper-v-belt pulley
355 – 2 x SPZ – 2012 bü Taper-v-belt pulley
400 – 2 x SPZ – 2517 bü Taper-v-belt pulley
450 – 2 x SPZ – 2517 bü Taper-v-belt pulley
500 – 2 x SPZ – 2517 bü Taper-v-belt pulley
63 – 3 x SPZ – 1108 rü 17 Taper-v-belt pulley
67 – 3 x SPZ – 1108 rü 17 Taper-v-belt pulley
71 – 3 x SPZ – 1108 rü 17 Taper-v-belt pulley
75 – 3 x SPZ – 1210 rü 14 Taper-v-belt pulley
80 – 3 x SPZ – 1210 rü 14 Taper-v-belt pulley
85 – 3 x SPZ – 1610 rü 14 Taper-v-belt pulley
90 – 3 x SPZ – 1610 rü 14 Taper-v-belt pulley
95 – 3 x SPZ – 1610 rü 14 Taper-v-belt pulley
100 – 3 x SPZ – 1610 rü 14 Taper-v-belt pulley
106 – 3 x SPZ – 1610 rü 14 Taper-v-belt pulley
112 – 3 x SPZ – 2012 bü Taper-v-belt pulley
118 – 3 x SPZ – 2012 bü Taper-v-belt pulley
125 – 3 x SPZ – 2012 bü Taper-v-belt pulley
132 – 3 x SPZ – 2012 bü Taper-v-belt pulley
140 – 3 x SPZ – 2012 bü Taper-v-belt pulley
150 – 3 x SPZ – 2012 bü Taper-v-belt pulley
160 – 3 x SPZ – 2012 bü Taper-v-belt pulley
170 – 3 x SPZ – 2012 bü Taper-v-belt pulley
180 – 3 x SPZ – 2012 bü Taper-v-belt pulley
190 – 3 x SPZ – 2012 bü Taper-v-belt pulley
200 – 3 x SPZ – 2012 bü Taper-v-belt pulley
224 – 3 x SPZ – 2012 bü Taper-v-belt pulley
250 – 3 x SPZ – 2012 bü Taper-v-belt pulley
280 – 3 x SPZ – 2517 bü Taper-v-belt pulley
315 – 3 x SPZ – 2517 bü Taper-v-belt pulley
355 – 3 x SPZ – 2517 bü Taper-v-belt pulley
400 – 3 x SPZ – 2517 bü Taper-v-belt pulley
450 – 3 x SPZ – 2517 bü Taper-v-belt pulley
500 – 3 x SPZ – 2517 bü Taper-v-belt pulley
630 – 3 x SPZ – 2517 bü Taper-v-belt pulley
63 – 4 x SPZ – 1108 Taper-v-belt pulley
67 – 4 x SPZ – 1108 Taper-v-belt pulley
71 – 4 x SPZ – 1108 Taper-v-belt pulley
75 – 4 x SPZ – 1210 rü 26 Taper-v-belt pulley
80 – 4 x SPZ – 1210 rü 26 Taper-v-belt pulley
85 – 4 x SPZ – 1610 rü 26 Taper-v-belt pulley
90 – 4 x SPZ – 1610 rü 26 Taper-v-belt pulley
95 – 4 x SPZ – 1610 rü 26 Taper-v-belt pulley
100 – 4 x SPZ – 2012 rü 20 Taper-v-belt pulley
106 – 4 x SPZ – 2012 rü 20 Taper-v-belt pulley
112 – 4 x SPZ – 2012 bü Taper-v-belt pulley
118 – 4 x SPZ – 2012 bü Taper-v-belt pulley
125 – 4 x SPZ – 2012 bü Taper-v-belt pulley
132 – 4 x SPZ – 2012 bü Taper-v-belt pulley
140 – 4 x SPZ – 2012 bü Taper-v-belt pulley
150 – 4 x SPZ – 2517 bü Taper-v-belt pulley
160 – 4 x SPZ – 2517 bü Taper-v-belt pulley
170 – 4 x SPZ – 2517 bü Taper-v-belt pulley
180 – 4 x SPZ – 2517 bü Taper-v-belt pulley
190 – 4 x SPZ – 2517 Taper-v-belt pulley
200 – 4 x SPZ – 2517 bü Taper-v-belt pulley
224 – 4 x SPZ – 2517 bü Taper-v-belt pulley
250 – 4 x SPZ – 2517 bü Taper-v-belt pulley
280 – 4 x SPZ – 2517 bü Taper-v-belt pulley
315 – 4 x SPZ – 2517 bü Taper-v-belt pulley
355 – 4 x SPZ – 2517 bü Taper-v-belt pulley
400 – 4 x SPZ – 2517 bü Taper-v-belt pulley
450 – 4 x SPZ – 3571 bü Taper-v-belt pulley
500 – 4 x SPZ – 3571 bü Taper-v-belt pulley
630 – 4 x SPZ – 3030 bü Taper-v-belt pulley
800 – 4 x SPZ – 3030 e.b. Taper-v-belt pulley
85 – 5 x SPZ – 1610 rü 38 Taper-v-belt pulley
90 – 5 x SPZ – 1610 rü 38 Taper-v-belt pulley
95 – 5 x SPZ – 1610 rü 38 Taper-v-belt pulley
100 – 5 x SPZ – 2012 rü 32 Taper-v-belt pulley
106 – 5 x SPZ – 2012 rü 32 Taper-v-belt pulley
112 – 5 x SPZ – 2012 bü Taper-v-belt pulley
118 – 5 x SPZ – 2012 bü Taper-v-belt pulley
125 – 5 x SPZ – 2012 bü Taper-v-belt pulley
132 – 5 x SPZ – 2517 bü Taper-v-belt pulley
140 – 5 x SPZ – 2517 bü Taper-v-belt pulley
150 – 5 x SPZ – 2517 bü Taper-v-belt pulley
160 – 5 x SPZ – 2517 bü Taper-v-belt pulley
180 – 5 x SPZ – 2517 bü Taper-v-belt pulley
200 – 5 x SPZ – 2517 bü Taper-v-belt pulley
224 – 5 x SPZ – 2517 bü Taper-v-belt pulley
250 – 5 x SPZ – 2517 bü Taper-v-belt pulley
280 – 5 x SPZ – 2517 bü Taper-v-belt pulley
315 – 5 x SPZ – 2517 bü Taper-v-belt pulley
355 – 5 x SPZ – 2517 bü Taper-v-belt pulley
400 – 5 x SPZ – 3571 bü Taper-v-belt pulley
450 – 5 x SPZ – 3571 bü Taper-v-belt pulley
500 – 5 x SPZ – 3030 bü Taper-v-belt pulley
630 – 5 x SPZ – 3030 bü Taper-v-belt pulley
100 – 6 x SPZ – 2012 rü 44 Taper-v-belt pulley
106 – 6 x SPZ – 2012 rü 44 Taper-v-belt pulley
112 – 6 x SPZ – 2012 rü 44 Taper-v-belt pulley
118 – 6 x SPZ – 2517 rü 31 Taper-v-belt pulley

 

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1. Our company boasts a combination of research and development, production and sales with highly professional capabilities.
2. Our company produces the pulley with the following: Drive can mitigate impact load; Transmission smooth operation, low noise, low vibration; Transmission of simple structure, easy to adjust; Drive for the manufacture and installation precision of pulley, unlike meshing transmission strictly; It has the function of overload protection; Transmission center distance of 2 axis adjusting range is larger.
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belt pulley

What are the maintenance requirements for belt pulleys in industrial settings?

In industrial settings, proper maintenance of belt pulleys is essential to ensure their optimal performance, longevity, and safe operation. Here’s a detailed explanation of the maintenance requirements for belt pulleys in industrial settings:

1. Regular Inspection: Belt pulleys should be inspected regularly to identify any signs of wear, damage, or misalignment. Inspect the pulleys for cracks, corrosion, excessive wear on the grooves, or any other visible abnormalities. Check for proper alignment by examining the position of the pulleys relative to each other and their corresponding belts. Regular inspections help detect issues early on and prevent further damage or failures.

2. Lubrication: Proper lubrication is crucial for the smooth operation of belt pulleys. Lubricate the pulley bearings according to the manufacturer’s recommendations. This helps reduce friction, heat generation, and wear on the bearings. Use the appropriate lubricant and follow the recommended lubrication intervals to ensure optimal performance and extend the life of the pulleys.

3. Tension Adjustment: Maintaining proper belt tension is vital for the efficient and reliable operation of belt pulleys. Check the tension of the belts regularly using the manufacturer’s guidelines or recommended tensioning devices. Adjust the tension as needed to ensure the belts are neither too loose nor too tight. Proper tensioning allows for effective power transmission, minimizes belt slippage, and reduces wear on the belts and pulleys.

4. Belt Replacement: Over time, belts may wear out or become damaged. Regularly inspect the belts for signs of wear, cracking, fraying, or excessive stretching. If any of these issues are present, replace the belts promptly with new ones of the correct size and type. Using worn or damaged belts can lead to reduced performance, increased risk of pulley damage, and potential system failures.

5. Cleaning: Keep the belt pulleys clean and free from debris, dust, and dirt that may accumulate over time. Use appropriate cleaning methods, such as brushing or compressed air, to remove any contaminants that could affect the pulley’s performance or the grip of the belts. Clean pulleys contribute to better belt traction, reduce the risk of slippage, and improve overall system efficiency.

6. Alignment Correction: Proper pulley alignment is crucial for efficient power transmission and to prevent premature wear. If misalignment is detected during inspections or if the belts are not running smoothly, take corrective measures to align the pulleys correctly. Use alignment tools, such as laser alignment devices, to ensure precise alignment of the pulleys. Proper alignment minimizes belt wear, reduces noise and vibration, and extends the life of the pulleys and belts.

7. Safety Measures: When performing maintenance on belt pulleys, always adhere to safety procedures. Follow lockout/tagout protocols to isolate the equipment from power sources before inspecting or working on the pulleys. Use appropriate personal protective equipment (PPE) to protect against potential hazards. Ensure that maintenance personnel are trained in safe maintenance practices and are familiar with the specific procedures for working with belt pulleys.

8. Record Keeping: Maintain a record of maintenance activities and inspections performed on belt pulleys. This includes dates of inspections, lubrication, tension adjustments, belt replacements, and any corrective actions taken. Keeping a maintenance log helps track the history of maintenance activities, identify recurring issues, and plan future maintenance tasks effectively.

In summary, the maintenance requirements for belt pulleys in industrial settings include regular inspections, proper lubrication, tension adjustment, belt replacement, cleaning, alignment correction, adherence to safety measures, and maintaining a maintenance record. By following these maintenance requirements, industrial facilities can ensure the optimal performance, longevity, and safe operation of belt pulleys, contributing to the overall efficiency and reliability of their industrial processes.

belt pulley

How do belt pulleys contribute to the operation of conveyor systems for material handling?

Belt pulleys play a crucial role in the operation of conveyor systems for material handling. Conveyor systems are widely used in industries such as manufacturing, mining, logistics, and agriculture to transport bulk materials or goods from one location to another. The belt pulleys in these systems contribute significantly to their functionality, efficiency, and reliability. Here’s a detailed explanation of how belt pulleys contribute to the operation of conveyor systems for material handling:

1. Power Transmission: Belt pulleys serve as the driving force for conveyor systems, transmitting power from an electric motor or engine to move the conveyor belt. The pulley is typically connected to the motor or engine shaft, and as it rotates, it drives the belt, which in turn transports the materials along the conveyor. The size and design of the pulley, along with the tension in the belt, determine the power transmission efficiency and the capacity of the conveyor system to handle different load weights and volumes.

2. Belt Tension and Tracking: Belt pulleys help maintain proper tension and tracking of the conveyor belt. Tensioning pulleys are used to adjust and maintain the tension in the belt, ensuring it remains taut and properly engaged with the pulleys. Tracking pulleys, also known as snub or bend pulleys, are strategically positioned to guide the belt and keep it centered on the pulley system. Proper tension and tracking prevent belt slippage, misalignment, and material spillage, ensuring smooth and reliable operation of the conveyor system.

3. Speed Control: Belt pulleys enable speed control in conveyor systems. By using different-sized pulleys or adjusting the pulley arrangement, the speed of the conveyor belt can be modified to suit specific material handling requirements. Speed control is essential for optimizing production processes, accommodating different material characteristics, and ensuring efficient material flow along the conveyor system.

4. Directional Changes: Belt pulleys facilitate directional changes in conveyor systems. By incorporating various pulley configurations, such as drive pulleys, idler pulleys, and bend pulleys, the conveyor belt can be guided around curves or redirected to different paths. This allows for flexible routing and layout of the conveyor system to adapt to space constraints or specific material flow patterns in material handling operations.

5. Load Distribution: Belt pulleys contribute to the even distribution of the load on the conveyor belt. As the belt wraps around the pulleys, the contact area between the belt and pulley surface spreads the load across a larger surface area. This load distribution minimizes stress concentration, reduces belt wear, and extends the operational life of the conveyor system.

6. Maintenance and Safety: Belt pulleys play a role in the maintenance and safety of conveyor systems. Accessible pulleys allow for easy inspection, cleaning, and maintenance of the conveyor belt. Pulley guards and covers provide protection against accidental contact with moving parts, enhancing the safety of personnel working around the conveyor system.

7. Customization and Adaptability: Belt pulleys can be customized and designed to meet specific material handling requirements. They can be manufactured in various sizes, materials, and configurations to accommodate different belt widths, load capacities, and environmental conditions. This customization ensures that the belt pulleys are optimized for the specific needs of the material handling application.

In summary, belt pulleys are integral components of conveyor systems for material handling. They contribute to power transmission, belt tensioning, speed control, directional changes, load distribution, and overall system maintenance and safety. By utilizing appropriately sized and designed belt pulleys, conveyor systems can efficiently and reliably transport bulk materials or goods, enhancing productivity and streamlining material handling operations in various industries.

belt pulley

What is a belt pulley, and how is it used in mechanical systems?

A belt pulley is a mechanical device used in various systems to transmit power and motion between rotating shafts. It consists of a wheel with a grooved rim, known as the pulley, that is connected to a shaft. The pulley is typically made of materials such as cast iron, steel, or aluminum. It is used in conjunction with a belt or a rope to transfer rotational motion from one shaft to another. Here’s a detailed explanation:

A belt pulley is essential in mechanical systems for the following purposes:

  • Power Transmission: The primary function of a belt pulley is to transmit power between rotating shafts. It connects the driving shaft (input) to the driven shaft (output) through a belt or a rope. When the driving shaft rotates, the belt or rope engages with the grooves on the pulley, causing the pulley and the driven shaft to rotate. This allows power to be transferred from the driving shaft to the driven shaft, enabling the operation of various mechanical components or systems.
  • Speed Control: Belt pulleys are used to control the rotational speed of driven shafts. By varying the size or ratio of the pulleys connected by the belt, the rotational speed can be adjusted. Using different-sized pulleys, it is possible to increase or decrease the speed of the driven shaft compared to the driving shaft. This speed control capability is beneficial in applications where different rotational speeds are required for specific operations or to match the requirements of different components in a system.
  • Directional Change: Belt pulleys also enable the change of direction in mechanical systems. By arranging multiple pulleys with belts or ropes in a system, the rotational motion can be redirected. For example, a system with two pulleys connected by a belt can change the direction of the driven shaft compared to the driving shaft. This directional change allows for the transmission of power and motion in desired orientations, enabling the operation of mechanical components or systems in different directions.
  • Tension Control: Belt pulleys play a role in maintaining proper tension in belt-driven systems. The tension in the belt is important to ensure a secure and reliable connection between the pulleys. Pulleys with adjustable features, such as tensioning systems or idler pulleys, help maintain the optimal tension in the belt. Proper tension control prevents belt slippage, ensures efficient power transmission, and reduces wear on the belt and pulley surfaces.
  • Noise and Vibration Reduction: Belt pulleys contribute to noise and vibration reduction in mechanical systems. The design of the pulley, including the groove profile and surface finish, can help minimize noise and vibration generated during operation. Additionally, proper alignment and tensioning of the belt ensure smoother engagement with the pulley, reducing noise and vibration levels. This is particularly important in applications that require quiet operation or where excessive vibrations can affect system performance or operator comfort.
  • Compatibility and Interchangeability: Belt pulleys offer compatibility and interchangeability benefits in mechanical systems. They provide a flexible and modular approach to power transmission, allowing different pulleys to be easily interchanged or replaced based on specific requirements. This versatility enables system designers and operators to adapt and modify mechanical systems more efficiently, making it easier to accommodate changes in load, speed, or other operational parameters.

In summary, a belt pulley is a mechanical device used for power transmission and motion control in various mechanical systems. It connects rotating shafts through belts or ropes, allowing power to be transmitted from one shaft to another. Belt pulleys provide speed control, directional change, tension control, noise and vibration reduction, as well as compatibility and interchangeability benefits. By utilizing belt pulleys, mechanical systems can efficiently transfer power, control speeds, and enable the operation of different components or systems in desired directions.

China high quality V Belt Pulley Groove Bearing Cast Iron Wheel Pulley with ISO9001 (SPA, SPB, SPC, SPZ)   pulley driveChina high quality V Belt Pulley Groove Bearing Cast Iron Wheel Pulley with ISO9001 (SPA, SPB, SPC, SPZ)   pulley drive
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