EN 10250-4 Grade X2CrNiN18-10: Solution‑Annealed Stainless Steel (+AT)
The austenitic CrNi-Stahl X2CrNiN18-10, comparable to X 2 CrNiN 18 10 acc. to DIN 17440 : 1985-07, shows a higher yield point due to alloying of nitrogen which is adhered even at higher temperatures. Using in pressure vessel construction and in light weight construction. Improved corrosion resistance by N-content. The material is resistant to intercrystalline corrosion also in sensitized condition. Suitability for chemical apparatus engineering as a result of resistance to nitrous acid and other oxidizing media. The steel is well cold formable and usable for mirror finishing.
Properties
General
| Property | Temperature | Value |
|---|---|---|
Density | 20.0 °C | 7.9 - 7.93 g/cm³ |
Mechanical
| Property | Temperature | Value | Comment |
|---|---|---|---|
Elastic modulus | -100.0 °C | 206 GPa | |
20.0 °C | 196 - 200 GPa | ||
100.0 °C | 190 - 194 GPa | ||
200.0 °C | 182 - 186 GPa | ||
300.0 °C | 174 - 179 GPa | ||
400.0 °C | 166 - 172 GPa | ||
500.0 °C | 158 - 165 GPa | ||
600.0 °C | 150 GPa | ||
700.0 °C | 142 GPa | ||
800.0 °C | 134 GPa | ||
900.0 °C | 127 GPa | ||
1000.0 °C | 120 GPa | ||
Elongation, transverse | 20.0 °C | 30 % | |
Poisson's ratio | 23.0 °C | 0.3 [-] | Typical for Austenitic Stainless Steel |
Shear modulus | 23.0 °C | 77 GPa | Typical for Austenitic Stainless Steel |
Tensile strength, transverse | 20.0 °C | 550 - 760 MPa | |
Yield strength Rp0.2 | 100.0 °C | 205 MPa | |
150.0 °C | 175 MPa | ||
200.0 °C | 157 MPa | ||
250.0 °C | 145 MPa | ||
300.0 °C | 136 MPa | ||
350.0 °C | 130 MPa | ||
400.0 °C | 125 MPa | ||
450.0 °C | 121 MPa | ||
500.0 °C | 119 MPa | ||
550.0 °C | 118 MPa | ||
Yield strength Rp0.2, transverse | 20.0 °C | 270 MPa | |
Yield strength Rp1.0 | 100.0 °C | 240 MPa | |
150.0 °C | 210 MPa | ||
200.0 °C | 187 MPa | ||
250.0 °C | 175 MPa | ||
300.0 °C | 167 MPa | ||
350.0 °C | 161 MPa | ||
400.0 °C | 156 MPa | ||
450.0 °C | 152 MPa | ||
500.0 °C | 149 MPa | ||
550.0 °C | 147 MPa | ||
Yield strength Rp1.0, transverse | 20.0 °C | 305 MPa | |
Thermal
| Property | Temperature | Value | Comment |
|---|---|---|---|
Coefficient of thermal expansion | -100.0 °C | 1.49E-5 1/K | |
20.0 °C | 1.61E-5 1/K | ||
100.0 °C | 1.6E-5 - 1.67E-5 1/K | ||
200.0 °C | 1.65E-5 - 1.72E-5 1/K | ||
300.0 °C | 1.7E-5 - 1.77E-5 1/K | ||
400.0 °C | 1.75E-5 - 1.81E-5 1/K | ||
500.0 °C | 1.8E-5 - 1.84E-5 1/K | ||
600.0 °C | 1.88E-5 1/K | ||
700.0 °C | 1.91E-5 1/K | ||
800.0 °C | 1.94E-5 1/K | ||
900.0 °C | 1.97E-5 1/K | ||
1000.0 °C | 2E-5 1/K | ||
Melting point | 1230 - 1480 °C | Typical for Austenitic Stainless Steel | |
Specific heat capacity | -100.0 °C | 440 J/(kg·K) | |
20.0 °C | 472 - 500 J/(kg·K) | ||
100.0 °C | 487 J/(kg·K) | ||
200.0 °C | 503 J/(kg·K) | ||
300.0 °C | 512 J/(kg·K) | ||
400.0 °C | 520 J/(kg·K) | ||
500.0 °C | 530 J/(kg·K) | ||
600.0 °C | 541 J/(kg·K) | ||
700.0 °C | 551 J/(kg·K) | ||
800.0 °C | 559 J/(kg·K) | ||
900.0 °C | 565 J/(kg·K) | ||
1000.0 °C | 571 J/(kg·K) | ||
Thermal conductivity | 20.0 °C | 14.3 - 15 W/(m·K) | |
100.0 °C | 15.8 W/(m·K) | ||
200.0 °C | 17.5 W/(m·K) | ||
300.0 °C | 19 W/(m·K) | ||
400.0 °C | 20.5 W/(m·K) | ||
500.0 °C | 21.9 W/(m·K) | ||
600.0 °C | 23.3 W/(m·K) | ||
700.0 °C | 24.6 W/(m·K) | ||
800.0 °C | 26 W/(m·K) | ||
900.0 °C | 27.4 W/(m·K) | ||
1000.0 °C | 28.8 W/(m·K) | ||
Thermal diffusivity | 20.0 °C | 3.8 mm²/s | |
100.0 °C | 4 mm²/s | ||
200.0 °C | 4.2 mm²/s | ||
300.0 °C | 4.6 mm²/s | ||
400.0 °C | 4.8 mm²/s | ||
500.0 °C | 4.9 mm²/s | ||
600.0 °C | 5 mm²/s | ||
700.0 °C | 5.3 mm²/s | ||
800.0 °C | 5.6 mm²/s | ||
900.0 °C | 5.9 mm²/s | ||
1000.0 °C | 6 mm²/s | ||
Electrical
| Property | Temperature | Value |
|---|---|---|
Electrical resistivity | 20.0 °C | 7.1E-7 Ω·m |
100.0 °C | 7.76E-7 Ω·m | |
200.0 °C | 8.49E-7 Ω·m | |
300.0 °C | 9.14E-7 Ω·m | |
400.0 °C | 9.71E-7 Ω·m | |
500.0 °C | 1.02E-6 Ω·m | |
600.0 °C | 1.07E-6 Ω·m | |
700.0 °C | 1.1E-6 Ω·m | |
800.0 °C | 1.14E-6 Ω·m | |
900.0 °C | 1.17E-6 Ω·m | |
1000.0 °C | 1.19E-6 Ω·m | |
Chemical properties
| Property | Value |
|---|---|
Carbon | 0.03 % |
Chromium | 17 - 19.5 % |
Manganese | 2 % |
Nickel | 8.5 - 11.5 % |
Nitrogen | 0.12 - 0.22 % |
Phosphorus | 0.05 % |
Silicon | 1 % |
Sulfur | 0.03 % |
Metal
- EN 10250-4 Grade X2CrNiMoCuN25-6-3 – Solution Annealed Steel for High-Performance Applications
- EN 10250-4 Grade X2CrNiMoCuWN25-7-4 – Solution Annealed for High-Performance Applications
- EN 10250-4 Grade X2CrNiMoN25-7-4: Solution-Annealed Steel for High-Performance Applications
- EN 10250-4 Grade X1CrNiMoCuN20-18-7 – Solution Annealed Stainless Steel for High-Performance Applications
- EN 10250-4 X2CrNi18-9 Austenitic Steel – Solution Annealed + AT
- EN 10250-4 X2CrNiN23-4 Duplex Stainless Steel – Solution Annealed (+AT)
- EN 10250-4 Grade X3CrNiMoN27-5-2 Solution Annealed – High-Performance Stainless Steel for Corrosion Resistance
- EN 10222-5 X2CrNiN18-10 – Solution Annealed + AT: High‑Performance Austenitic Stainless Steel
- EN 10250-4 X2CrNi19-11 Stainless Steel – Solution Annealed (+AT) – High Corrosion Resistance & Premium Quality
- EN 10250-4 Grade X2CrNiMo17-12-2 Solution-Annealed Steel (+AT) – High Corrosion Resistance