Technical Parameters
Wear-Resistant Material Application: The main structure is manufactured from high-strength alloy steel and strengthened through heat treatment processes to improve surface hardness and wear resistance. This enables the product to withstand long-term rotational loads and continuous friction, extending the service life of critical components.
Optimized Outer C.V. Joint Structure: Adopting a constant velocity joint design, the product features a rationally arranged raceway structure and optimized steel ball movement path, ensuring stable speed output during power transmission and meeting continuous driving requirements under various steering conditions.
High-Precision Machining Process: The ball tracks, spline connection areas, and internal moving contact surfaces are precisely machined to effectively control dimensional accuracy, improve assembly compatibility, and ensure smoother operation.
Enhanced Fatigue Resistance Design: Designed according to the cyclic load conditions of automotive drive shafts, the load-bearing areas are structurally optimized to improve resistance against impact forces and fatigue damage.
Sealing and Lubrication Protection: The product can be used with dedicated dust boots and high-performance grease to reduce the entry of external contaminants into internal mechanisms and maintain stable lubrication performance over extended operation.
Core Advantages
Excellent Wear Resistance: Through reinforced materials and optimized contact structures, the product effectively reduces wear between steel balls and raceways, improving the long-term stability of the outer C.V. joint.
Efficient Power Transmission: The precision internal movement design minimizes energy loss during power transfer, allowing engine output power to be delivered more smoothly to the drive wheels.
Strong Steering Adaptability: Designed specifically for wheel-side transmission applications, the outer C.V. joint accommodates angle changes during vehicle cornering while maintaining continuous and stable power output.
Enhanced Impact Resistance: The reinforced structure withstands sudden impact loads caused by vehicle acceleration, braking, and challenging road conditions, improving overall drivetrain reliability.
Reduced Maintenance and Replacement Frequency: Excellent wear resistance combined with effective sealing protection helps reduce the risk of abnormal wear, extending service intervals and lowering maintenance costs.
Application Range
Outer C.V. joint assemblies for automotive drive shafts;
Wheel power transmission systems of passenger cars and compact vehicles;
Daily urban driving and vehicles operating under complex road conditions;
Automotive repair and aftermarket applications requiring wear resistance, stable transmission performance, and extended service life.