Custom Metal Stamping

High-speed, high-precision custom metal stamping services from prototypes to high-volume production runs. Equipped with advanced press machines from 25T to 600T, we deliver flawless sheet metal stamped components tailored to your exact engineering blueprints

  • Press Capacity: 25 Tons to 600 Tons
  • Stamping Speed: Up to 800 Strokes/Min
  • Material Thickness: 0.1mm – 6.0mm

Metal Stamping Capabilities

  • Progressive Die Stamping
  • Transfer Die Stamping
  • Deep Drawn Stamping
  • Fine Blanking & Precision Punching

Stamping Materials & Specifications

Material Category Common Stamped Grades Key Applications
Stainless Steel SUS304, SUS316, SUS301, 17-4 PH Corrosion-resistant medical cases, marine brackets, springs
Aluminum 5052-H32, 6061-T4/T6, 1100, 3003 Lightweight automotive brackets, EV battery cans, heat sinks
Brass & Copper C26000, C36000, C11000 (Pure Copper) High-conductivity electrical contacts, terminals, busbars
Carbon/Carbon Steel SPCC, SPHC, Q235, Q355, Spring Steel Heavy-duty structural mounts, chassis plates, clips

Industries We Serve

  • Automotive & EV: Stamped structural reinforcements, battery cell enclosures, shieldings, and sensor brackets.
  • Electronics & Telecom: Shielding cans (EMI/RFI shields), precision terminal connectors, grounding clips, and chassis.
  • Medical Devices: Biocompatible surgical instrument components, dental matrix bands, and micro-stamped enclosures.
  • Appliances & Hardware: Custom hinges, lock strike plates, panel trim handles, and structural mounting hardware.

In-House Tooling & Quality Assurance

  • In-House Tooling Design & Simulation
  • Tooling Lifespan Guarantee
  • Inspection Labs

FAQ Section

  • Q1: What are the typical tooling costs and lead times for custom metal stamping?
    • A1: Tooling costs depend on part complexity and production volume. Prototype single-hit tooling usually takes 2-3 weeks with low initial costs, while heavy-duty progressive production dies take 4-6 weeks but offer the lowest per-piece price for mass production.

  • Q2: Can you help optimize my design to reduce metal stamping costs?
    • A2: Yes, our in-house engineering team offers DFM (Design for Manufacturing) analysis. We review your blueprints to optimize material utilization (reduce scrap layouts) and simplify bending stages to lower both tooling and part costs.

  • Q3: How do you handle burr control on precision stamped components?
    • A3: We closely monitor tool wear and apply precise die clearances based on material thickness. For zero-burr requirements, we employ post-stamping processes such as vibratory tumbling, de-burring machines, or chemical polishing.


Contact us

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You can upload your design and send it along with us. So that we can provide you with the optimal solution.