ISO 9001 & ISO 13485 Certified Tangxia, Dongguan · China

Stainless Steel Machining

303, 304 and 316 — including the grades used for medical device components under our ISO 13485 system.

Stainless steel is chosen for what it refuses to do: rust, corrode, react, or attract a magnet. The three grades we run most cover most of that ground, and the differences between them matter more than the price difference suggests.

Grades We Run

303Free-cutting stainless. Sulphur added for machinability, which is why it machines roughly twice as fast as 304. The default when corrosion resistance is the goal and volume is real.
304General-purpose austenitic stainless. Better corrosion resistance and weldability than 303, but gummier to machine and prone to work-hardening.
316304 plus molybdenum. Noticeably better resistance to chlorides and marine environments, and the grade most often specified for medical and food-contact components.

Stainless Steel Machining Capabilities

Grades303 (free-cutting), 304, 316
Machining tolerance±0.01 mm standard
Surface roughnessRa 1.6
ProcessesCNC turning, turn-mill compound, Swiss-type turning, milling
Typical partsPins, shafts, bushings, medical instrument components, valve parts, fittings, spacers
Surface finishingPassivation, polishing, sandblasting, electro-coating, PVD
RecordsMaterial certificate, dimensional report, first article inspection (FAI), salt-spray and hardness tests
Medical304 and 316 components machined under our ISO 13485:2016 certified quality system

Machining notes

303 is not a cosmetic choice. The sulphur that makes it free-cutting also makes it slightly less corrosion resistant than 304 and unsuitable for some welding. It is the right answer for a machined part in volume, and the wrong answer for a part that will be welded or exposed to aggressive chemistry.

304 and 316 work-harden. Cutting too lightly, or dwelling in the cut, hardens the surface instead of removing it — and the next pass gets harder still. It is why these grades machine more slowly and why the tooling and feeds matter more than they do in brass. We account for it in the quoted cycle time rather than discovering it on the machine.

Passivation is usually worth specifying. Machining leaves free iron on the surface. Passivation removes it and restores the oxide layer that makes stainless steel stainless — a small step that prevents rust appearing on a part that is supposed to resist it.

Stainless Steel Machining — Common Questions

Which grade should I choose — 303, 304 or 316?
303 if the part is machined in volume and corrosion resistance is normal rather than extreme. 304 where weldability or slightly better corrosion resistance matters. 316 for chlorides, marine exposure, medical and food-contact components. Tell us where the part is used and we will confirm.
Do you machine stainless steel for medical devices?
Yes — 304 and 316 components are machined under our ISO 13485:2016 certified quality management system, certificate no. 39125M208006R0S, valid to 24 August 2028.
Do you supply material certificates?
Yes. The material certificate travels with the shipment, and dimensional reports, first article inspection, salt-spray and hardness testing are available. Tell us what your quality system requires.
Why is 304 more expensive to machine than 303?
It work-hardens and produces stringy chips, so cycle times are longer and tool life shorter. The material price is similar; the machine time is not.
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