XRAY 376333 - X1 2024 2.5mm Graphite Side Brace Arms Competition Kit  [XR-376333]

XRAY 376333 - X1\'24 Side Brace ARM - Graphite 2.5MM (2)
Price:
£10.42
Brand:
XRAY
Model:
XR-376333
Condition:
Brand New
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Chassis stiffness upgrade with XRAY 376333 graphite arms

Targeted at racers and tuners, the XRAY 376333 X1 2024 Graphite Side Brace Arms are a purposeful upgrade. Made from 2.5mm graphite, these arms join the front lower arms to the chassis side braces to reduce twisting and improve stability, especially on high grip surfaces with foam tyres.

Why choose graphite on your X1 2024

Graphite strikes a balance between stiffness and weight savings, preserving responsiveness while giving a firmer platform. The result is more accurate steering feedback during competitive runs.

What high traction racing benefits you

On surfaces that offer strong mechanical grip, limiting chassis movement makes suspension changes more effective. The XRAY 376333 braces deliver that extra rigidity so settings remain consistent from lap to lap.

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.
They are designed around X1 2024 geometry, so fitting to other chassis may need custom mounting or different hardware.
Graphite is light, so the weight increase is minimal while stiffness gains are noticeable, making it an efficient trade for competition use.
Foam tyre compounds that produce high mechanical grip will benefit most from these braces, as they help the car resist chassis flex under load.
After fitting, recheck front toe and camber, and run a few practice laps to confirm balance. Small shock or anti-roll tweaks may be needed to fine tune handling.
Inspect for hairline cracks around mounting holes and clean abrasive debris off the graphite. Replace if any damage is visible to avoid failure under race loads.

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