XRAY 355625 Rear Central CVD Shaft Pro Series  [XR-355625]

XRAY 355625 Rear Centr. CVD Drive Shaft - HUDY Spring Steel
Price:
AUD$72.84
Brand:
XRAY
Model:
XR-355625
Condition:
Brand New
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Durable Rear Central Drive Shaft for Off-Road

The XRAY 355625 Rear Central CVD Drive Shaft is engineered to improve drivetrain durability and control on rough surfaces. Built from HUDY Spring Steel, it is intended to withstand heavy loads while keeping accurate alignment.

Robust Material and Thoughtful Design

HUDY Spring Steel provides a high strength-to-weight ratio and good resistance to repeated stress. Precision machining keeps tolerances tight so the shaft runs true under load.

Fine-Tuned Finishing Process

Each XRAY 355625 is finished by hand to ensure true running and consistent fitment. This finishing reduces vibration and helps maintain smooth drivetrain operation over time.

Purpose-Built for Off-Road Dynamics

Designed with off-road dynamics in mind, this drive shaft offers reliable performance during aggressive driving and rough terrain sessions, helping maintain consistent handling characteristics.

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.
The XRAY 355625 is made from resilient HUDY Spring Steel and is suitable for heavy use, though no component is invulnerable to extreme impacts; regular inspection is advised.
Basic RC hand tools are usually sufficient for installation. Ensure correct torque and clean mating surfaces for a secure fit.
Hand-grinding removes microscopic irregularities and helps achieve concentricity, which lowers vibration and promotes smoother drivetrain operation.
Inspect hubs, bearings and pins when changing the shaft; replacing worn mating parts together helps preserve overall system reliability.
A precisely made central shaft contributes to predictable power delivery and can help maintain consistent handling by minimising driveline lash and imbalance.

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