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Cogged Wedge Belt XPC
Cogged Wedge Belt XPC
Cogged Wedge Belt XPC
Cogged Wedge Belt XPC

Cogged Wedge Belt XPC

Cogged Wedge Belt XPC Specification

  • Belt Type
  • Cogged Wedge Belt XPC
  • Material
  • Rubber, Polyester Cord
  • Belt Color
  • Black
  • Belt Diameter
  • Custom/Standard (as per application)
  • Belt Edge
  • Cut Edge
  • Hardness
  • 70-80 Shore A
  • Tolerance
  • IS: 14262/ISO 4184
  • Width
  • 22 mm
  • Angle
  • 40 Degrees
  • Construction
  • Raw Edge, Moulded Cogged
  • Application
  • Industrial Power Transmission
  • Layer Structure
  • Multiple fabric layers
  • Length Range
  • 1000 mm to 6000 mm
  • Surface
  • Anti-static, Oil and Heat Resistant
  • Section
  • XPC
  • Temperature Range
  • -30°C to +80°C
 
 

About Cogged Wedge Belt XPC

Feature

  • Strong tensile members to give durability. Wedge profile allows for a smaller drive package and lower operating costs.
  • Engineered cushion compound. Cut-edge cogged construction on most sizes.
  • Better curves provide proper cord support and full contact with the pulley-groove for uniform loading, uniform wear, and increased belt life.
  • High flexibility.
  • 25% to30% higher power ratings than wrapped V-belts.

 



Superior Performance Across Diverse Conditions

The XPC Cogged Wedge Belt is designed for dependable operation in challenging industrial settings. Its advanced materials, anti-static properties, and resistance to oil, heat, and abrasion ensure long service life and minimal downtime. The belt's multiple fabric layers and precision moulded cogs enhance flexibility and grip, making it ideal for power transmission across a wide temperature spectrum.


Engineered for Precise Industrial Applications

Manufactured to strict international standards, the belt features a cut edge and tailored hardness of 70-80 Shore A for optimal performance. The flexibility to provide custom or standard belt diameters means it can be aligned perfectly with various machinery specifications. Its raw edge construction further improves drive efficiency and noise reduction, fostering a reliable working environment.

FAQ's of Cogged Wedge Belt XPC:


Q: How do I select the correct Cogged Wedge Belt XPC length for my industrial application?

A: To choose the right belt length, measure the distance between the pulleys and consult your machine's technical specifications. The XPC belt is available in lengths from 1000 mm to 6000 mm, allowing for precise matching to your power transmission requirements.

Q: What benefits does the anti-static, oil and heat-resistant surface offer in industrial environments?

A: The anti-static properties protect equipment from electrical discharges, while oil and heat resistance ensures the belt remains effective and durable in harsh environments, reducing maintenance frequency and enhancing operational safety.

Q: When should the Cogged Wedge Belt XPC be replaced in machinery?

A: Regular inspection is recommended. Replace the belt if you notice significant wear, cracking, loss of tension, or diminished transmission efficiency to maintain optimal industrial performance.

Q: Where is the Cogged Wedge Belt XPC commonly used?

A: This belt is widely applied in industrial power transmission systems, including conveyor systems, compressors, and other heavy-duty machinery, especially in environments requiring high torque and reliability.

Q: What is the process for installation of Cogged Wedge Belt XPC?

A: Installation requires aligning the pulleys, fitting the belt according to the marked direction, adjusting tension within recommended limits, and ensuring the belt sits evenly in the pulley grooves for smooth operation.

Q: How does the moulded cogged construction improve the belt's performance?

A: Moulded cogs increase the belt's flexibility, enhance heat dissipation, and provide better engagement with pulley grooves. This results in improved transmission efficiency and longer service life.

Q: What advantage does the multiple fabric layer structure provide?

A: Multiple fabric layers reinforce the belt's strength, reduce stretch, and offer enhanced stability during operation, making it suitable for high-load and high-speed applications in industrial settings.

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