XRAY 35T composite bevel gear made with Kevlar graphite for enhanced durability, perfect for precision upgrades in RC vehicles.  [XR-364935]

XRAY 364935 Composite Differential Bevel Gear 35T - Kevlar Graphite - V2
Price:
USD$14.50
Brand:
XRAY
Model:
XR-364935
Condition:
Brand New
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High-Performance Differential Bevel Gear for RC Enthusiasts

For serious RC hobbyists looking to enhance their vehicle's performance, the XRAY 364935 Composite Differential Bevel Gear is an excellent choice. Crafted from a robust Kevlar graphite composite, this 35T gear offers exceptional strength and longevity, making it ideal for demanding racing conditions. The advanced material ensures smooth operation and reduces wear, providing a reliable upgrade for your RC vehicle's differential system.

Durability Meets Precision Engineering

The XRAY 364935 gear is designed to withstand the rigors of competitive racing and high-performance applications. Its Kevlar graphite construction not only enhances durability but also ensures precision engagement with other drivetrain components. This results in improved power transfer efficiency and consistent performance on various terrains.

Ideal for Upgrades and Maintenance

Whether you're upgrading your current setup or performing routine maintenance, this composite differential bevel gear is a valuable addition to your RC toolkit. Its compatibility with a wide range of RC models makes it a versatile choice for hobbyists seeking to optimize their vehicle's handling and speed.

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 364935 gear is designed to fit a variety of 1/10 scale RC vehicles, offering flexibility for different models.
Kevlar graphite enhances durability and reduces wear, ensuring smooth operation and extended gear life under high-stress conditions.

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