410
1.4006 · EN 10088 / AISI · 1.4006
410 is a stainless steel (Martensitic family) to EN 10088 / AISI (1.4006). It has a specified 0.2 % proof stress of 420 MPa and a typical tensile strength of about 650 MPa, with a uniform elongation of 20 %. Nominal carbon content is around 0.08 %. For nonlinear FEA, a bilinear model uses E = 200 GPa up to yield and a tangent modulus of 1173 MPa above it. Unusually for a stainless steel it can be hardened by heat treatment, trading some corrosion resistance for strength and wear resistance.
Bilinear material model — nonlinear FEA
Uniform elongation εu = 20.0% · conservative analysis limit ½εu = 10.0%
Bilinear (BISO) approximation. Elastic modulus E up to the 0.2% proof stress R_p0.2, then a single tangent slope Eₜ to the ultimate tensile strength: Eₜ = (Rₘ − R_p0.2) / (εu − R_p0.2/E − 0.002), where εu is the uniform elongation and Rₘ is a typical (nominal) UTS within the specified band. The half-εu figure is a conservative strain limit for the analysis. Treat these as guidance for first-pass models; for critical work use a measured true stress–strain curve for the actual product and condition.
Ratings — engineering judgement
Weldabilitypoor
Difficult — hardens on cooling. Preheat and post-weld tempering are normally required.
Machinabilitymoderate
Soft and gummy at low carbon — sharp tooling helps surface finish.
Corrosion resistancegood
Good atmospheric and mild-chemical resistance from the chromium content; less resistant than austenitics in chlorides.
Hardenabilitygood
Hardenable by heat treatment (unusual among stainless steels).
Toughnessmoderate
Adequate toughness for general use at ambient temperature.
Indicative ratings derived from composition and family — engineering guidance, not specification values.
Physical properties
| Density | 7750 | kg/m³ |
| Elastic modulus | 200 | GPa |
| Shear modulus | 76.9 | GPa |
| Poisson's ratio | 0.30 | |
| Thermal expansion | 10.5 | ×10⁻⁶/°C |
| Thermal conductivity | 25 | W/(m·K) |
| Specific heat | 460 | J/(kg·K) |
| Magnetic | Yes |
Typical values for martensitic steel — use the mill certificate for the specific product.
Chemical composition (wt %)
Composition per EN 10088 / AISI for 410 (1.4006).
Available forms
Common applications
- Process, food and pharmaceutical equipment
- Architectural and marine hardware
- Fasteners and fittings for corrosive service
- Tanks, pipework and heat exchangers
History
The martensitic stainless steels are the original stainless — Harry Brearley’s 1913 Sheffield cutlery steel. Higher carbon lets them harden by heat treatment like a tool steel while keeping ~12–18 % chromium for corrosion resistance, trading some of that resistance for strength, hardness and edge-holding. The base martensitic — hardenable to ~45 HRC for valves, fasteners and turbine parts.
- 1913Harry Brearley melts the first martensitic stainless steel in Sheffield
- 1915“Stainless steel” cutlery reaches the market
- 1950Higher-carbon 440-series developed for bearings, blades and instruments
This profile is generated from the grade's core data and family. Composition is decoded from the designation where its naming system defines it; physical properties are family-typical and ratings are indicative. Confirm critical values against the governing standard or the mill certificate. Equivalents, historical designations and hand-written expert notes are added per grade over time.