XRAY 345452 Rear Kevlar Drive Belt 8.0x204mm Performance Fit  [XR-345452]

XRAY 345452 Low Friction Kevlar Drive Belt Rear 8.0x204mm
Price:
NZD$45.43
Brand:
XRAY
Model:
XR-345452
Condition:
Brand New
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Improve Throttle Response with XRAY 345452 Kevlar Belt

The XRAY 345452 Low Friction Kevlar Drive Belt is engineered for model racers and weekend tuners wanting cleaner drivetrain action. Constructed from Kevlar, the rear belt combines toughness with the slight give needed for consistent power flow.

Why Kevlar Makes a Difference

Kevlar offers outstanding tensile strength and measured flexibility, which helps the XRAY 345452 resist stretching under load while keeping smooth pulley contact. This can translate to crisper acceleration and steadier corner exits.

Size and Suitability for Multiple Setups

At 8.0x204mm the belt suits many chassis layouts, making it useful for replacements or upgrades across different vehicle types. Whether on short circuits or mixed surfaces, it helps maintain reliable driveline behaviour.

Specifications

  • Material: Kevlar
  • Size: 8.0x204mm
  • Application: Rear drive belt
  • Compatibility: Various RC chassis

For those looking to refine transmission efficiency without complex mods, the XRAY 345452 Kevlar Drive Belt is a straightforward, durable option.

Remark :
Due to limited stock availability, please notice that some XRAY items may have to order from the factory and the ready time is around 4-6 weeks. Customer purchases the item is assumed to accept the waiting time which allows us to order directly from the manufacturer if the item is out of our warehouse.
Yes, if your touring car uses an 8.0x204mm belt profile the XRAY 345452 will be compatible. Double-check pulley widths and routing to ensure correct fitment.
A short running period under light load helps the belt seat into pulleys. After this, recheck tension and pulley alignment to avoid premature wear.
Kevlar gives good strength, but for extreme horsepower builds monitor for slippage and verify that pulleys and bearings can handle the increased load.

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