China Suppliers Factory Specialized Copper Cylindrical Head Parts for New Energy Vehicle Charging Piles
Custom Core
Unlike the mass production model of general hardware parts, we always adhere to "customization on demand" as our core service concept. This copper cylindrical head component was developed from the outset based on in-depth needs research, fully considering the special requirements of charging piles in outdoor environments, high-frequency plugging and unplugging, and current conduction, achieving full-dimensional customization services from materials and dimensions to performance.
Tailored to installation environments like coastal salt spray or high-humidity areas. Base copper purity exceeds 99.95% for peak conductivity, with alloy options for optimized corrosion resistance and extended service life.
Precision machining allows for tolerances within ±0.005mm. This ensures a perfect match with various charging pile interfaces, eliminating loosening issues and improving assembly efficiency.
Conductivity and mechanical strength are adjusted for both fast and slow charging requirements, balancing low energy consumption with the toughness needed for high-frequency use.
Features
Supported by a customized system, this copper cylindrical head component not only achieves precise fit but also boasts outstanding advantages in core performance, fully meeting the stringent standards of charging pile manufacturing. It is widely used in DC fast charging, AC slow charging, and high-power cluster charging facilities.
High-purity copper keeps resistivity at an extremely low level, reducing energy loss during charging and creating a significant energy-saving advantage for equipment manufacturers.
Advanced surface treatments resist acid rain, salt spray, and UV rays. Stable performance is maintained even in harsh environments, preventing traditional oxidation issues.
Customized head curvature ensures stable contact during insertion, preventing electrical sparks. High-strength copper resists deformation for a solid safety barrier.












