Which Stainless Steel Grade Fits Your Custom Hardware Part?

Pick the wrong grade and your part corrodes, cracks or costs too much to machine. This guide walks through the five families of stainless steel, the eight grades we see most in custom hardware, and which manufacturing process — forging, die casting, CNC or stamping — actually suits each one.

At Changye we work with stainless steel across all six of our in-house processes: forging, die casting, sheet metal, stamping, CNC turning/milling and wire EDM. That means when a customer sends a drawing for a non-standard part, we don’t just ask “what material?” — we ask “what material plus what process?” because the grade you pick changes which method makes sense, how much machining is needed, and whether the part can be produced at volume without scrap.

Experience note: We’ve seen projects where the customer specified 316 “just to be safe” — but the part was an indoor bracket that never sees chlorides. Switching to 304 cut material cost roughly 20% and machined faster, with zero functional sacrifice. The best grade is rarely the most expensive; it’s the one that matches your real operating conditions.

1. The Five Families of Stainless Steel

Stainless steels are grouped by their microstructure — the arrangement of crystals that forms when the alloy cools. Each family trades off corrosion resistance, strength, hardness, weldability and machinability in different ways. Here’s the landscape:

Austenitic (300-series, CF-series)

High chromium + high nickel. Best corrosion resistance and weldability. Non-magnetic. The workhorse family — 304 and 316 account for most custom hardware we process.

Ferritic (400-series)

Chromium with very little nickel. Lower cost, moderate corrosion resistance, magnetic. Easier to machine than austenitic. Grades like 430 and 409 — good for decorative and exhaust hardware.

Martensitic (410, 420, 440)

Designed for hardness and wear resistance. Can be heat-treated to high strength. Corrosion resistance is lower than 304/316. Ideal for shafts, blades, valve internals.

Duplex (2205, 2507)

Mixed austenite + ferrite structure. Nearly twice the yield strength of 304 with excellent chloride stress-corrosion resistance. Allows thinner, lighter parts without sacrificing durability.

Precipitation-Hardening (17-4 PH)

Ultra-high strength while keeping good corrosion resistance. Dimensionally stable after heat treatment. Used in aerospace brackets, precision gears, energy hardware.

2. Eight Grades We See Most — and Why

Some grades cast beautifully but fight the CNC tool. Others machine like butter but crack in a forge. Here are the eight we quote most often, with the trade-offs that actually matter for custom hardware:

GradeFamilyCorrosion ResistanceStrengthMachinabilityWeldabilityBest Process Fit
304AusteniticExcellentMediumFairExcellentCNC, stamping, sheet metal
316AusteniticSuperior (+Mo)MediumFairExcellentCNC, die casting (CF8M equiv.)
CF8Austenitic (cast)ExcellentMediumFairExcellentDie casting / investment casting
CF8MAustenitic (cast)SuperiorMediumFairExcellentDie casting / investment casting
410MartensiticMediumHighGoodMediumForging, CNC
420MartensiticMediumVery HighGoodLimitedForging, CNC, wire EDM
2205DuplexExcellentVery HighMediumMediumForging, CNC (careful weld control)
17-4 PHP-HGoodVery HighGoodGoodCNC, forging, wire EDM

A few practical notes from our shop floor:

  • 304 is the default for indoor brackets, food-contact hardware, architectural parts and general industrial components. It balances everything — corrosion, formability, weldability, cost — and is the easiest to source globally. When there’s no chloride exposure, 304 is usually the right call.
  • 316 adds molybdenum for chloride and chemical resistance. It’s the go-to for marine, pharmaceutical and chemical hardware. Price runs about 25–35% above 304, but in saltwater environments the service-life difference makes it cheaper overall.
  • CF8 and CF8M are the casting equivalents of 304 and 316. If your part has complex internal passages (valve bodies, pump housings), die casting or investment casting in CF8/CF8M gives near-net shape and then CNC finishes the sealing faces.
  • 410 and 420 are our forging-friendly martensitic grades. They machine faster than 304/316 (less tool wear), and after heat treatment they hold hardness for wear surfaces — shafts, valve seats, industrial tools.
  • 2205 duplex has yield strength around twice that of 304, so we can design thinner cross-sections for offshore or chemical-service brackets and save weight without sacrificing load capacity. Welding needs tighter procedure control.
  • 17-4 PH is the answer when a customer says “I need it strong and corrosion-resistant.” After precipitation-hardening heat treatment, it delivers both — ideal for aerospace brackets, precision linkages, and oil-field hardware.

3. How to Pick the Right Grade — Without Over-Specifying

The instinct to “just use 316 everywhere” is understandable but expensive. Here’s our decision framework, based on what the drawing and the operating environment actually require:

What You NeedRecommended GradeReason
General corrosion resistance (indoor, no chlorides)304Best cost-to-performance ratio in the austenitic family
Marine, chemical, or chloride exposure316Molybdenum buys you service life that 304 can’t match
Strong chloride stress-corrosion cracking resistance2205Duplex structure resists cracking where austenitic grades fail
High hardness / wear resistance410, 420Martensitic grades are heat-treatable to high hardness
Very high strength + corrosion resistance17-4 PH, 2205P-H gives dimensional stability after heat treat; duplex gives yield strength
Best machinability (less tool wear, faster cycles)410, 420Martensitic machines easier than austenitic — shorter CNC time
Food / medical contact304, 316Clean surface finish + regulatory acceptance
Complex internal geometry (cast part)CF8, CF8MCasting equivalents of 304/316 — near-net shape, then CNC finish
Cost efficiency across the board304Material + machining + welding all cheaper; covers 70% of applications

DFM tip from Changye: When you send us a drawing, we review not just the geometry but the grade-vs-process fit. If you’ve called out 316 for a part we can forge from 410 and then machine to spec, we’ll flag that — because 410 forgings are faster and cheaper, and the corrosion resistance of 410 may be perfectly adequate for an indoor shaft. The savings go straight to your unit cost.

4. Which Process Fits Your Stainless Part?

At Changye, we don’t offer just one process — we offer six. That means the grade you pick determines not only the material cost but which manufacturing route gives the best quality-per-dollar:

Forging

Best for martensitic grades (410, 420) and duplex (2205). Produces dense, high-strength parts with favorable grain flow. Not ideal for austenitic 304/316 — they work-harden under the hammer, making post-forge machining harder.

Die Casting

Best for austenitic casting grades (CF8, CF8M) and some aluminum/zinc alloys. Gives near-net shape for complex internals. Martensitic grades don’t cast well — they crack on cooling.

CNC Turning & Milling

Works for every grade, but machinability varies widely. 410/420 machine fast; 304/316 are gummy and wear tools; 17-4 PH is moderate after solution-annealing. Best for tight-tolerance features (±0.01mm) and low-to-medium volumes.

Wire EDM

Grade-independent (any conductive stainless works). Solves the “impossible geometry” problem — thin slots, sharp internal corners, precision fits at ±0.005mm. Ideal when CNC can’t reach or the part is too thin to hold.

Sheet Metal & Stamping

Best for austenitic grades (304, 316) and ferritic (430). Formability is key — martensitic and P-H grades resist bending and crack. Stamping 304 washers, clips and brackets is fast and cost-efficient at volume.

Combined Flow

Real custom hardware often needs more than one process: CF8M casting + CNC finishing for valve bodies; 410 forging + CNC + wire EDM for complex shafts; 304 stamping + welding for enclosures. Changye runs all steps in-house, so there’s no inter-vendor delay.

5. Honest Limits (So You Can Plan)

Trust beats a re-run. A few boundaries we’re upfront about:

  • 304/316 don’t forge well — they work-harden under deformation, making post-forge CNC cycles longer and tool wear higher. If you need a forged high-corrosion-resistance part, we’ll discuss duplex 2205 as an alternative.
  • Martensitic grades have limited weldability — 420 welds require pre-heat and post-heat treatment; skip it and you get cracking. We’ll tell you if your design calls for a weld on a grade that shouldn’t be welded.
  • 17-4 PH needs heat treatment to reach its properties — specifying it “as-cast” or “as-forged” means you get medium strength, not the ultra-high numbers on the datasheet. We flag this on every drawing review.
  • Duplex welding is not a weekend project — it needs controlled interpass temperature, proper filler selection and often post-weld annealing. We have the procedure; but if your design has many weld joints, the cycle time adds up.
  • Not every grade is stocked locally — exotic duplex and P-H grades may have longer lead-in times for raw material. We’ll quote the lead time honestly, not promise what the mill can’t deliver.

Send Us Your Stainless Steel Drawing

Changye is a non-standard OEM/ODM custom hardware and fastener manufacturer — forging, die casting, sheet metal, stamping, CNC and wire EDM all under one quality system. We’ll pick the right grade and the right process for your part.