Product Description
Characteristic:
It has the advantages of high transmission power, long service life, small performance fluctuation, oil resistance, heat resistance, wear resistance and high transmission efficiency. It is widely used for power transmission of cooling fan, water pump and compressor of automobile engine. It can also ensure safety performance when running at high speed.
15355 – Belt OEM | |
ACURA (SEE HONDA) | 56992PG6B0030 |
ACURA (SEE HONDA) | 56992PG60040 |
ACURA (SEE HONDA) | 56992PH4A51 |
ACURA (SEE HONDA) | 56992PC6004 |
ACURA (SEE HONDA) | 56992PG6004 |
ACURA (SEE HONDA) | 56992PC60030 |
ACURA (SEE HONDA) | 56992PC60040 |
ACURA (SEE HONDA) | 56992PH10030 |
ACURA (SEE HONDA) | 56992PG60030 |
ACURA (SEE HONDA) | 56992PL60040 |
ACURA (SEE HONDA) | 56992PH1004 |
ACURA (SEE HONDA) | 56992PG6003 |
ACURA (SEE HONDA) | 56992PR30040 |
ACURA (SEE HONDA) | 56992PH10031 |
ACURA (SEE HONDA) | 56992PH4A520M2 |
ACURA (SEE HONDA) | 56992PL6004 |
ACURA (SEE HONDA) | 56992PH30040 |
ACURA (SEE HONDA) | 56992PR3004 |
ACURA (SEE HONDA) | 56992PH1003 |
ACURA (SEE HONDA) | 56992PR3003 |
ACURA (SEE HONDA) | 56992PH4A52 |
ACURA (SEE HONDA) | 56992PC6003 |
ACURA (SEE HONDA) | 56992PH10040 |
AM GENERAL | 11599019 |
AM OEM COLLISION | 8112428 |
AM OEM COLLISION | 3138574 |
AMC | 8112428 |
AMC | 3138574 |
AMERICAN MOTORS (SEE CHRYSLER) | 3138574 |
AMERICAN MOTORS (SEE CHRYSLER) | 8112428 |
AUDI | 95717B |
AUDI | 95717E |
AUDI | 95717A |
AUDI | 11195717D |
AUDI | 111903307E |
AUDI | 11195717F |
AUDI | 11195717E |
AUDI | 11195717B |
AUDI | 11195717A |
AUDI | 95717D |
BMW | 32411266788 |
BMW | 1266786 |
BMW | 1180DA |
BMW | 95X900 |
BMW | 32421469247 |
CATERPILLAR | 1H1001 |
CATERPILLAR | 618626 |
CATERPILLAR | 617108 |
CHRYSLER | 1671881 |
CHRYSLER | 5240847 |
CHRYSLER | 1617781 |
CHRYSLER | 3138574 |
CHRYSLER | 457185 |
CHRYSLER | 5214071 |
CHRYSLER | 8112428 |
CHRYSLER | J3138574 |
CHRYSLER | 4 0571 66 |
CHRYSLER | 177899 |
DAIHATSU | 995211571 |
FIAT | 4446617 |
FORD | B7A8620E |
FORD | E6PZ8620B |
FORD | 92JA8620AA |
FORD | F0JY8620A |
FORD | C2R8620E |
FORD | EBP8620E |
FORD | D12E8620BA |
FORD | E1DE8620AA |
FORD | D2DE8620BA |
FORD | F2JY8620A |
FORD | C2AE8620R |
FORD | C0DZ8620A |
FORD | C3AZ8620A |
FORD | ECE8577A |
FORD | C0DE8620C |
FORD | E9JY8620A |
GENERAL MOTORS | 1932124 |
GENERAL MOTORS | 35718 |
GENERAL MOTORS | 464633 |
GENERAL MOTORS | 3933092 |
GENERAL MOTORS | 5111821 |
GENERAL MOTORS | 11557172 |
GENERAL MOTORS | 1340671 |
GENERAL MOTORS | 1376051 |
GENERAL MOTORS | 1190639 |
GENERAL MOTORS | 5511821 |
GENERAL MOTORS | 92034743 |
GENERAL MOTORS | 9433621 |
GENERAL MOTORS | N57190 |
GENERAL MOTORS | 9433724 |
GENERAL MOTORS | 88934299 |
GENERAL MOTORS | 9433723 |
GENERAL MOTORS | EB15835 |
GENERAL MOTORS | 326080 |
GENERAL MOTORS | 957143 |
GENERAL MOTORS | 7424263 |
GENERAL MOTORS | 540123 |
HOLDEN | 92034743 |
HONDA | 56992PH1004 |
HONDA | 56992PG6004 |
HONDA | 56992PG60040 |
HONDA | 56992PG6003 |
HONDA | 56992PG6B0030 |
HONDA | 56992PL60040 |
HONDA | 56992PH4A52 |
HONDA | 56992PG60030 |
HONDA | 56992PC6004 |
HONDA | 56992PC6003 |
HONDA | 56992PL6004 |
HONDA | 56992PR30040 |
HONDA | 56992PH10031 |
HONDA | 56992PH30040 |
HONDA | 56992PR3003 |
HONDA | 56992PH4A520M2 |
HONDA | 56992PR3004 |
HONDA | 56992PC60030 |
HONDA | 56992PC60040 |
HONDA | 56992PH10040 |
HONDA | 56992PH4A51 |
HONDA | 56992PH1003 |
HONDA | 56992PH10030 |
HYSTER | 157930 |
INTERNATIONAL | 491383C1 |
INTERNATIONAL | 491382C1 |
INTERNATIONAL | 56829C1 |
INTERNATIONAL | 491384C91 |
INTERNATIONAL | 830122C1 |
INTERNATIONAL | 998180R1 |
INTERNATIONAL | 491383C91 |
MAZDA | N3571715 |
Mercedes | 7753009502 |
Mercedes | CT1169971192 |
Mercedes | 1172571000 |
Mercedes | 05713009502 |
Mercedes | 39975592 |
Mercedes | 10AUX897 |
Mercedes | CT1169972992 |
Mercedes | 0039975592 |
MITSUBISHI | REMF1355 |
MITSUBISHI | MF1355 |
MITSUBISHI | RECMF1355 |
NEW HOLLAND | 525351 |
NISSAN | 11720E3005 |
NISSAN | 211790013 |
NISSAN | 571179571 |
NISSAN | 11920N9700 |
NISSAN | 117207B400 |
NISSAN | 21179571 |
NISSAN | 117207B405 |
NISSAN | 5711790013 |
NISSAN | 2106731301 |
NISSAN | 11720N9700TM |
NISSAN | 11720N9700 |
NISSAN | 11720N8502 |
NISSAN | 11720U5715 |
NISSAN | 2106773001 |
NISSAN | 117207B410 |
OEM | A612608 |
OEM | 55421100 |
OEM | TCK0366 |
OEM | 11720E3001 |
OEM | 151515 |
OEM | 068121039M |
OEM | 78045 |
OEM | 85710260 |
OEM | 04895717 |
OEM | 1302637 |
OEM | GFB10900 |
OEM | 95X915 |
OEM | LFM358 |
OEM | 571145271F |
OEM | 5320K |
OEM | 993210571 |
OEM | 95710905 |
OEM | 7357103 |
OEM | 905717146 |
OEM | AW315714 |
OEM | CBS2190C |
OEM | G76034 |
OEM | IH1001 |
OEM | 61500132295 |
OEM | CODZ8620A |
OEM | C29607 |
OEM | IG2716 |
OEM | 11195717C |
OEM | 2612209 |
OEM | 4895717 |
OEM | 5000666890 |
OEM | 7301775 |
OEM | GFB176 |
OEM | MO53590 |
OEM | C1DE8A615A |
OEM | ADU2400 |
OEM | 11195717 |
OEM | GFB103 |
OEM | TKC386 |
OEM | 11720N8500 |
OEM | 11720PO300 |
OEM | 3870390 |
OEM | 491382C91 |
OEM | 1340703 |
OEM | 32411711144 |
OEM | 97118571 |
OEM | 1336671 |
OEM | 7408896 |
OEM | 1119571TB |
OEM | 596433 |
OEM | 87DA8620AA |
OEM | 046145271A |
OEM | 1266788 |
OEM | 1340697 |
OEM | 3553HP |
OEM | 8112058 |
OEM | 817BTR |
OEM | 5715717 |
OEM | 575032 |
OEM | 32421711065 |
OEM | 3013012 |
OEM | 0026169000 |
OEM | 218576 |
OEM | 134571 |
OEM | 0571 5717 |
OEM | 1195717E |
OEM | 13H8310 |
OEM | 1629 |
OEM | 1634741 |
OEM | 77BA8620AA |
OEM | 26169000 |
OEM | 34457132 |
OEM | 3731248 |
OEM | 1195717D |
OEM | 1357158R3 |
OEM | 53390 |
OEM | FM358 |
OEM | 7419411 |
OEM | 11720R3005 |
OEM | 457100 |
OEM | 4695717 |
OEM | 5000133114 |
OEM | 56992PR4A120 |
OEM | 92571812 |
OEM | AW306232 |
OEM | 01629 |
OEM | 7700630569 |
OEM | 32421706750 |
OEM | 905712295 |
OEM | 4041 |
OEM | 5395717 |
OEM | 575571 |
OEM | 90448698 |
OEM | 95X900LA |
OEM | FM356 |
OEM | 995211 0571 |
OEM | V86BB6C301AA |
OPEL | 1157199 |
OPEL | 9571615 |
OPEL | 9292427 |
PEUGEOT | 7915715992 |
STUDEBAKER | 1548511 |
SUBARU | 85710390 |
SUBARU | 8571571 |
SUBARU | 85715710 |
SUBARU | 85710300 |
SUBARU | 85715710 |
SUBARU | 85710360 |
Towmotor | C629571C24 |
TOYOTA | 993215571 |
VOLKSWAGEN | 95717E |
VOLKSWAGEN | 11195717D |
VOLKSWAGEN | 111903307E |
VOLKSWAGEN | 95717B |
VOLKSWAGEN | 95717D |
VOLKSWAGEN | 95717A |
VOLKSWAGEN | 11195717E |
VOLKSWAGEN | 11195717A |
VOLKSWAGEN | 11195717B |
VOLKSWAGEN | 11195717F |
VOLVO | 958396 |
VOLVO | 958306 |
VOLVO | 958351 |
VOLVO | 966906 |
VOLVO | 958441 |
VOLVO | 966963 |
VOLVO | 9583060 |
VOLVO | 967030 |
FAQ
1) How can I place order?
A:You can contact us by email about your order details, or place order on line.
2) How can I pay you?
A:After you confirm our PI, we will request you to pay.T/T (bank) and Paypal, Western Union are the most usual ways we are using.
3) What’s the order procedure?
A:First we discuss order details, production details by email or TM.Then we issue you an PI for your confirmation.You will be requested to do pre-paid full payment or deposit before we go into production.After we get the deposit, we start to process the order.We usually need 7-15days if we don’t have the items in stock.Before production has been finished, we will contact you for shipment details, and the balance payment.After payment has been settled, we start to prepare the shipment for you.
4)How do you take care when your clients received defective products?
A:Replacement.If there are some defective items, we usually credit to our customer or replace in next shipment.
5)How do you check all the goods in the production line?
A:We have spot inspection and finished product inspection.We check the goods when they go into next step production procedure. /* 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(/(.*?):(.*)$/))&&1
Type: | Conveyor Belt |
---|---|
Feature: | Wear-resistant, Heat-resistant, Tear-resistant, Flame-resistant, Cold-resistant |
Performance: | Strong Rubber Conveyor Belt |
Materials: | Cr, EPDM |
for Car: | Nissan,Volvo,Subaru,Honda,Toyota |
OEM: | 11720e3005,958396,56992pg6003 |
Samples: |
US$ 0/Piece
1 Piece(Min.Order) | |
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What are the key differences between standard V-belts and cogged V-belts?
Standard V-belts and cogged V-belts are two variations of V-belts that differ in their design and performance characteristics. Here are the key differences between these two types of belts:
- Design:
- Flexibility:
- Heat Dissipation:
- Power Transmission Capacity:
- Noise and Vibration:
- Application Suitability:
Standard V-belts have a smooth, continuous surface on the inside, which comes in contact with the pulleys. On the other hand, cogged V-belts have notches or cogs on the inside surface. These cogs allow the belt to flex more easily and improve its flexibility and bending capabilities.
The presence of cogs in cogged V-belts makes them more flexible compared to standard V-belts. This increased flexibility allows cogged V-belts to bend and wrap around smaller pulleys more easily. It also reduces the bending stress and heat generation, resulting in improved performance and longer belt life.
Cogged V-belts have better heat dissipation properties compared to standard V-belts. The cogs create additional surface area, which improves airflow and heat dissipation during operation. This helps to reduce heat buildup and minimize the risk of belt slippage or premature wear due to excessive heat.
Standard V-belts and cogged V-belts have similar power transmission capacity for most applications. However, cogged V-belts may have a slightly reduced power capacity compared to standard V-belts due to the presence of cogs, which can reduce the contact area with the pulleys. As a result, cogged V-belts are typically used in applications that require moderate power transmission.
Cogged V-belts generally produce less noise and vibration compared to standard V-belts during operation. The presence of cogs helps to reduce the vibration and noise caused by belt slippage or engagement with the pulleys. This makes cogged V-belts suitable for applications where noise reduction is important, such as in HVAC systems or household appliances.
Standard V-belts are commonly used in a wide range of industrial applications for power transmission. They are suitable for applications with larger pulleys and higher power requirements. Cogged V-belts, on the other hand, are often preferred in applications that involve smaller pulleys, tighter spaces, or where improved flexibility and reduced noise are desired.
It’s important to consider the specific requirements of the application and consult the manufacturer’s recommendations when choosing between standard V-belts and cogged V-belts. Understanding the key differences between these two types of belts can help in selecting the most appropriate option for a particular power transmission application.
How do you troubleshoot common issues with V-belts, such as slipping or squealing?
Troubleshooting common issues with V-belts, such as slipping or squealing, is essential to maintain the proper operation and efficiency of the belt drive system. Here are some troubleshooting steps to address these issues:
- Slipping:
- Check the belt tension: Insufficient tension is a common cause of slipping. Ensure that the V-belt is properly tensioned according to the manufacturer’s recommendations. Adjust the tension by using the appropriate tensioning method or tools.
- Inspect for wear or damage: Examine the V-belt for signs of wear, cracks, fraying, or other damage. A worn-out belt may not provide adequate grip and can lead to slipping. Replace the belt if necessary.
- Check pulley alignment: Misaligned pulleys can cause the belt to slip. Verify that the pulleys are properly aligned both parallel and angularly. Adjust the pulley positions if misalignment is detected.
- Assess pulley condition: Worn or damaged pulleys can contribute to belt slipping. Inspect the pulleys for wear, rough surfaces, or damage. If needed, replace the pulleys to ensure proper belt engagement.
- Verify the load and application: Excessive loads or improper application can cause the belt to slip. Ensure that the belt drive system is designed and rated for the specific load requirements.
- Squealing:
- Check belt tension: Insufficient or excessive belt tension can lead to squealing. Adjust the tension to the recommended range specified by the manufacturer.
- Inspect for wear or contamination: Check the V-belt for signs of wear, glazing, or contamination. Worn or contaminated belts may produce squealing noises. Replace the belt if necessary and eliminate any contamination from the belt or pulleys.
- Examine pulley condition: Damaged or worn pulleys can create noise. Inspect the pulleys for wear, damage, or rough surfaces. Replace any worn or damaged pulleys.
- Verify pulley alignment: Misaligned pulleys can cause the belt to run at an angle, resulting in noise. Ensure that the pulleys are correctly aligned both parallel and angularly. Adjust the pulley positions if misalignment is detected.
- Check for belt glazing: Belt glazing occurs when the belt’s contact surface becomes smooth and glossy, reducing traction. If glazing is present, roughen the belt’s surface with fine sandpaper or replace the belt if necessary.
- Assess environmental factors: Environmental conditions, such as excessive heat or humidity, can affect belt performance. Ensure that the belt drive system operates within the recommended temperature and humidity ranges.
Slipping occurs when the V-belt fails to maintain proper traction with the pulleys, resulting in reduced power transmission and potential belt wear. To troubleshoot slipping issues:
Squealing noises from V-belts are often caused by vibrations, misalignment, or improper tension. To troubleshoot squealing issues:
By following these troubleshooting steps, you can identify and address common issues with V-belts, such as slipping or squealing. Regular maintenance, proper tensioning, and alignment are crucial for ensuring the smooth and efficient operation of the belt drive system.
What are the advantages of using V-belts in power transmission systems?
V-belts offer several advantages when used in power transmission systems:
- 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.
- 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.
- 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.
- Simple installation: V-belts are relatively easy to install and replace. They can be quickly mounted on the pulleys without requiring extensive alignment procedures.
- 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.
- 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.
- 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.
editor by CX 2023-12-22