XRAY 364123 Rear Aluminum Plate for MSC Clutch Track Upgrade  [XR-364123]

XRAY 364123 - Aluminium Plate For Multi-adjustable Slipper Clutch (Msc) - Rear - 7075 T6 Hard Coated
Price:
NZD$35.69
Brand:
XRAY
Model:
XR-364123
Condition:
Brand New
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Fine-Tuning XB4 Slipper Performance with a Machined Rear Plate

The XRAY 364123 Rear Aluminum Plate is made to refine the Multi-adjustable Slipper Clutch on XB4 models. Constructed from Swiss 7075 T6 aluminium, this component keeps weight low while improving resistance to wear, complemented by a hard coated black surface.

Engineered Relief for Cleaner Slipper Action

Strategic machining reduces unnecessary contact areas so clutch slip behaves more predictably. By focusing pressure at the clutch pad edge, this plate helps provide smoother power delivery and crisper engagement on mixed surfaces.

Fits XB4 2020 and 2021 Chassis Without Modification

Made specifically for XB4 2020-2021 variants, it installs directly into the existing setup. Whether you run on carpet or rougher tracks, the plate is tailored to racers wanting consistent clutch behaviour.

Specifications

  • Material: Swiss 7075 T6 Aluminum
  • Finish: Hard Coated Black
  • Compatibility: XB4 2020-2021 Models

For XB4 owners seeking steadier MSC performance, the XRAY 364123 Rear Aluminum Plate is a robust and practical upgrade.

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.
Basic metric drivers and a torque driver for clutch nut preload are sufficient; no specialised machining is required for fitment.
The aluminium plate can help dissipate heat slightly better than stock materials, but running conditions and settings have greater impact on temperatures.
Standard XB4 clutch pads work fine; if you want different slip characteristics, experiment with pad compounds and spring tensions rather than the plate itself.

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