Flat Belts — High-Speed Transmission, Low Noise

Nylon-core, leather-core, and PU flat belts. Speed rating up to 60 m/s. Width range 10-500mm for high-speed power transmission.

60 m/s
Max Speed
10-500mm
Width Range
3
Core Materials
<65dB
Noise Level

Specifications

Type Core Material Width Range (mm) Max Speed (m/s) Thickness (mm) Lead Time
Nylon-CoreNylon fabric20-300502-63-5 days
Leather-CoreLeather10-200403-85-7 days
PU FlatPolyurethane10-500601-53-5 days
Aramid-CoreAramid fiber15-250552-77-10 days
Polyester-CorePolyester20-400452-53-5 days
High-FrictionPU+Nylon15-200502-45-7 days
Anti-StaticPU+Carbon20-300502-65-7 days
Oil-ResistantNBR+Core25-350453-77-10 days

Key Features

Low Noise Operation

Smooth power transmission with minimal vibration and noise, ideal for quiet working environments.

High Speed Rating

Designed for high-speed applications up to 60 m/s without compromising performance or durability.

Flexible

Excellent flexibility for small pulley diameters and complex routing requirements.

Multiple Core Materials

Choose from nylon, leather, PU, aramid, or polyester cores to match your application needs.

Frequently Asked Questions

What is the difference between flat belts and timing belts?

Flat belts transmit power through friction and are ideal for high-speed, non-precision applications with low noise requirements. Timing belts use tooth engagement for synchronous, zero-backlash power transmission. Choose flat belts for speed and quiet operation, timing belts for precision positioning.

How do I select the right flat belt for high-speed applications? +

For high-speed applications, consider PU flat belts with aramid or polyester cores. Ensure the pulley diameter meets minimum bend radius requirements. Pay attention to centrifugal forces at speeds above 40 m/s. Our engineering team can help with selection.

What are the common joining methods for flat belts? +

Common joining methods include finger splicing (strongest, seamless appearance), mechanical fasteners (quick installation), and gluing (for lightweight applications). Finger splicing is preferred for high-speed and high-power applications.

Applications

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Printing

Paper feed and roller drive systems

Packaging

Conveyor and wrapping machine drives

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Paper Processing

Paper mill and converting equipment

Textile

Spinning and weaving machine drives

Related Products

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