Ag: $2.906/g | Ag (No.3): $2.903/g | Cu: $0.015/g | Zn (No.1): $0.003/g | Ni: $0.021/g | SN: $0.058/g | In: $0.648/g | Cd (No.0): $0.004/g | 4/16/2026 12:17:08 AM CET

Stamping Components

Product Highlights
Stamped components are made from sheet metal using processes such as punching, bending, and drawing. These components are widely used across automotive systems, including body structures, battery packs, door locks, and chassis assemblies. The primary materials are high-strength steel, iron, copper, and copper alloys. These components are lightweight, high-strength, and high-precision, meeting EV high-voltage system requirements while supporting lightweight vehicle design, ensuring structural integrity and safe electrical power delivery. Our stamped components are essential foundation parts for ensuring efficient and reliable vehicle operation.

- Precision Metal Stamping
Stamped through an advanced mold stamping process to ensure high accuracy, consistency, and durability in every part.

- High-Quality Surface Finish
The finishing process includes magnetic polishing and electroplating for a smooth, corrosion-resistant surface, resulting in long-term automotive use.

- Strict Quality Control
Each part is inspected thoroughly to ensure dimensional accuracy, strength, and reliability.

- Optimized for Automotive Use
Designed for automotive door locks in harsh environments.
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Product Description

Stamped components include conventional stamped parts as well as parts produced with in-die welding, in-die riveting, and in-die tapping. These products are primarily used as contacts for contactors and circuit breakers, and as automotive stamped parts. Stamped components offer high dimensional accuracy, high consistency, high yield, efficient production rates, and low per-unit cost.

Advantage

Our stamping presses range from 25 to 630 tons; the product materials include iron, copper, copper alloys, and silver. The machine is capable of integrated stamping-welding and stamping-riveting processes, and this multi-process integration reduces per-unit costs. The equipment is highly automated, delivering production speeds up to 500 strokes per minute, with enhanced safety and stability. Precision molds are used to ensure high dimensional accuracy and maintain consistent mass production.

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