Forging forming -- English · 2023年7月28日 0

Application of copper forgings in the automotive industry: improving vehicle performance and safety

Copper forgings are widely used in the automobile industry, which can improve the performance and safety of automobiles. The following are some common application areas: Engine components: Copper forgings can be used in the manufacture of engines, such as key components such as crankshafts, connecting rods and pistons. By using copper forgings, you can improve the wear resistance, sealing and heat conductivity of the engine, and improve the efficiency and reliability of the engine. Brake system: Copper forgings are widely used in brake systems such as brake drums, brake pads and brake discs. Copper forgings have good thermal conductivity and wear resistance, which can provide more reliable braking performance, reduce the temperature increase and braking force decrease during braking, and improve the safety of the braking system. Suspension system: Copper forgings are used for components in the suspension system, such as control arms and friction pairs. Because the copper forging has high strength and good fatigue resistance, it can withstand the impact and vibration of the vehicle during the driving process, provide more stable suspension performance, and improve the vehicle’s handling and riding comfort. Electrical systems: Copper forgings are also widely used in vehicle electrical systems, such as battery terminals, cable connectors and electronic control modules. Copper forgings have good electrical and thermal conductivity, which can ensure the efficient work of the electrical system, reduce resistance and energy loss, and improve the performance and reliability of the vehicle. All in all, the application of copper forgings in the automotive industry helps to improve the performance and safety of automobiles, and provides a more reliable and stable operating environment for automobiles by providing excellent properties such as high strength, wear resistance, thermal and electrical conductivity. Copy content