Deep Draw Metal Stamping

We fabricate custom deep drawn metal stampings for OEMs—precision tooling, tight tolerances, and consistent repeatability. Competitive pricing with full engineering support from prototype to production.

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Deep Draw Stamping

Our deep drawing capabilities cover both single-die and progressive die setups. We run copper, iron, stainless steel, aluminum, titanium and its alloys, Monel, nickel-based alloys, Kovar, and Invar—so you can source a wide range of drawn parts from one shop.

Fabrication Services

Our deep draw and stamping work is built around automotive component suppliers and solenoid valve makers, and we've since expanded into high-volume production of deep-drawn parts for medical devices and aerospace applications.

Cooperation Case

Our Partner

We work with Facet S.r.l in Italy, Sensor Technik GmbH in Germany, and US-based Solenoid System Inc. and Standard Electric Manufacturing Company—so you're in good company when you spec Balford for your drawn components.

Partner: FACET Srl
Partner: Senso Tech GmbH
Partner: Solenoid System Inc
Partner: Standard Electric Manufacturing Company

What sets us apart

Precision Measurement

Critical part tolerances are verified with calibrated plug gauges. Our dedicated sorting and inspection rooms provide full traceability and rigorous in-process checks, so you get consistent dimensional accuracy run after run.

Quality Control

Before we start a run, engineering and QC sign off on the first article. During production, we check key dimensions and surface condition at set intervals. Operators monitor the line in real time, and our quality team audits to TS16949 requirements—so you can count on PPAP-level documentation when you need it.

Material Saving

Our vision-guided cutting systems improve raw material yield and cut accuracy across the line. Combined with progressive die stamping and automated part handling, we keep tolerances tight and throughput consistent—so you get more usable parts per coil and fewer rejects downstream.

Process Optimization

Best Practices

In deep draw tooling, we deliberately thin the sidewall while holding full material thickness at the bottom. By ironing the outer wall during the draw, we get a smoother, straighter surface and avoid demolding hang-ups. This is built into our progressive deep draw dies, so you get consistent wall geometry part after part.

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Best Practices

We can hold tight outer radii, inner radii, and flange corner radii in deep drawn parts—down to a true 90° corner where needed. This is a practical option for components like electromagnetic valve housings, spring seats, and magnetic shielding rings, where sharp geometry affects fit and function.

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Project Case Studies

Spring Cup for Valve Spring Holder
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Metal End Cap for DC Motor
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Stainless Steel Housing for ABS Wheel Speed Sensor
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Metal Housing for Hydraulic Cartridge Valve
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Metal Housing for Excavator Proportional Valve
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Metal Ring for Rubber Bonded Metal Collar
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Metal cap for methanol injection solenoid valve—stamped from coil-fed stock, with blanking and piercing held to ±0.05 mm. Secondary deburring ensures a clean sealing face for reliable operation under pressure.
Check case—verify wall thickness and surface finish per drawing; confirm material certs and hardness before shipment.
Coil housing for ESC/ABS magnet solenoid—deep drawn from low-carbon steel, with tight ID tolerance for magnet fit. Progressive die tooling keeps dimensional repeatability across high-volume runs; PPAP documentation available on request.
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Metal Bushings for Anti Vibration Bush
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Valve Spring Seat
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Strictly Confidential

We will sign a Non-Disclosure Agreement (NDA) with our partners to strictly protect the confidentiality of customer drawings, materials, and prototypes.