Custom Deep Drawn Parts

Seamless custom deep drawing solutions for complex, symmetrical, and non-symmetrical metal components. Capable of extreme depth-to-diameter ratios with minimal wall thinning and tight tolerances up to ±0.02mm

  • Press Tonnage: 25T – 600T
  • Max Draw Depth: Up to 200mm (or your actual capability)
  • Thickness Range: 0.1mm – 4.0mm

Our Deep Drawing Capabilities

  • Multi-Station Progressive Deep Drawing
  • Transfer Press Deep Drawing
  • Shallow vs. Deep Drawing
  • Reverse Redrawing

Material Selection & Formability

Material Type Common Grades Typical Deep Drawn Applications
Stainless Steel 304, 316L, 305 (Excellent work hardening) Medical enclosures, aerospace parts, food-grade cups
Aluminum 1100, 3003, 5052 (High formability) Battery cases, electronic housings, shields
Brass / Copper C26000 (Cartridge Brass), C11000 Ammunition cups, plumbing sleeves, electrical connectors
Cold Rolled Steel SPCC, CRS Automotive brackets, oil filter cans, motor housings

Typical Deep Drawn Components & Industries

  • Sensor & Electronics Housings: Deep drawn shielding cans, probe covers, and capacitor cups.
  • Automotive Components: Fuel rail components, oxygen sensor cups, and airbag inflator housings.
  • Medical & Laboratory: Biocompatible stainless steel implantable cases and surgical tool handles.
  • Aerospace & Defense: High-strength lightweight alloy sleeves, canisters, and pressure vessels.

In-House Tooling Design & Quality Control

  • FEA Formability Simulation
  • In-house Tooling Maintenance
  • Inspection Equipment

FAQ Section

    • Q1: What is the ideal depth-to-diameter ratio for custom deep drawn parts?
        • A1: While a 1:1 ratio is standard for a single draw, our engineering team can achieve much higher ratios through multi-station progressive redrawing and inter-stage annealing if necessary.

    • Q2: How do you prevent wall thinning and wrinkling during the deep draw process?
        • A2: We utilize advanced FEA simulation software to optimize blank holder pressure and material flow, and select premium draw lubricants to eliminate tearing and wrinkling.

    • Q3: What are the tooling cost expectations for deep drawing?
        • A3: Deep draw tooling (especially progressive dies) requires high-quality die steel and precision craftsmanship, leading to higher initial costs. However, it offers the lowest per-piece price for high-volume production, making it highly cost-effective in the long run.


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