XRAY 362250-G Graphite Composite Steering Block  [XR-362250-G]

XRAY 362250-G Composite Steering Block - Graphite
Price:
USD$13.71
Brand:
XRAY
Model:
XR-362250-G
Condition:
Brand New
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alt="XRAY 362250-G Composite Steering Block - Graphite" title="XRAY 362250-G Composite Steering Block - Graphite"

Enhanced Steering Stability with XRAY Graphite Composite

The XRAY 362250-G Graphite Composite Steering Block is crafted from a specially formulated graphite composite material, providing an exceptional balance between durability and performance. Designed to withstand the rigors of high-traction conditions, these compact yet robust steering blocks enhance your RC vehicle's stability and cornering speed.

Advanced Material Composition for Optimal Performance

Constructed from a unique composite mixture, these steering blocks are engineered for maximum strength. The graphite material not only enhances the overall stability of your RC car but also contributes to increased cornering efficiency, making it a favored choice among hobbyists seeking improved handling on high-traction tracks.

Ball-Bearing Configuration for Drivetrain Reliability

To ensure maximum drivetrain reliability, the XRAY steering block utilizes larger 5x12mm ball-bearings in the outer position to handle increased dynamic loads. Meanwhile, the inner position employs smaller 5x10mm ball-bearings, effectively minimizing unsprung weight and contributing to a more responsive driving experience.

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.
This steering block is designed for use in a variety of 1/10 scale RC cars, particularly those requiring enhanced stability and cornering performance.
The graphite composite material offers a perfect balance of strength and weight, resulting in improved stability and faster cornering speeds under high-traction conditions.

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