XRAY 358183 Grey Front Shock Springs C=0.70 Set  [XR-358183]

XRAY 358183 Front Spring Set C = 0.70 - Grey (2)
Price:
NZD$27.88
Brand:
XRAY
Model:
XR-358183
Condition:
Brand New
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alt="XRAY 358183 Front Spring Set C = 0.70 - Grey (2)" title="XRAY 358183 Front Spring Set C = 0.70 - Grey (2)"
alt="XRAY 358183 Front Spring Set C = 0.70 - Grey (2)" title="XRAY 358183 Front Spring Set C = 0.70 - Grey (2)"

Improve Front-End Balance with Precision Springs

If you want cleaner steering and predictable turn-in, the XRAY 358183 Front Shock Springs are a direct way to refine front geometry behaviour. Supplied in grey as a matched two-spring set, they are intended for fine tuning front shock response.

Consistent Build and Coil Choices

The XRAY 358183 springs are manufactured using the same wire thickness for consistent feel across the pair. The number of coils determines spring softness or firmness, so you can choose based on whether you need more compliance or a firmer front end.

Careful Matching for Predictable Handling

Every spring in the XRAY 358183 kit is measured and paired using incremental compression readings to ensure matched performance. That process reduces variation between left and right, helping maintain steady handling during a race run.

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 primarily for front shock setups but may work on some rear applications depending on your shock length and spring seat. Check dimensions before swapping.
More coils generally lower the effective rate for a softer feel, while fewer coils raise the rate for a firmer response, so adjust coil choice to match surface grip and steering needs.
Each spring is compressed and measured in stages, then paired with a mate that shows the same compression values to ensure identical reaction under load.

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