EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW)

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) introduction

Application for mounting elements at increased temperatures.

Equivalent material: UNS S21500, DIN 1.4982, EN 1.4982, ASTM S21500

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) general

Property Temperature Value
Density 20.0 °C Density of 7.95 g/cm³

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) thermal

Property Temperature Value Comment
Coefficient of thermal expansion 100.0 °C Coefficient of thermal expansion of 1.57E-5 1/K -
- 200.0 °C Coefficient of thermal expansion of 1.68E-5 1/K -
- 300.0 °C Coefficient of thermal expansion of 1.77E-5 1/K -
- 400.0 °C Coefficient of thermal expansion of 1.83E-5 1/K -
- 500.0 °C Coefficient of thermal expansion of 1.86E-5 1/K -
- 600.0 °C Coefficient of thermal expansion of 1.9E-5 1/K -
Melting point - Melting point of 1230 - 1480 °C Typical for Austenitic Stainless Steel
Specific heat capacity 20.0 °C Specific heat capacity of 480 J/(kg·K) -
Thermal conductivity 20.0 °C Thermal conductivity of 12.5 W/(m·K) -

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) chemical

Property Value
Boron Boron of 3E-3 - 9E-3 %
Carbon Carbon of 0.07 - 0.13 %
Chromium Chromium of 14 - 16 %
Manganese Manganese of 5.5 - 7 %
Molybdenum Molybdenum of 0.8 - 1.2 %
Nickel Nickel of 9 - 11 %
Niobium Niobium of 0.75 - 1.25 %
Nitrogen Nitrogen of 0.1 - 0.11 %
Phosphorus Phosphorus of 0.04 %
Silicon Silicon of 1 %
Sulfur Sulfur of 0.015 - 0.03 %
Vanadium Vanadium of 0.15 - 0.4 %

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) electrical

Property Temperature Value
Electrical resistivity 20.0 °C Electrical resistivity of 7.4E-7 Ω·m

EN 10269 Grade X10CrNiMoMnNbVB15-10-1 solution heat-treated and warm worked (+AT+WW) mechanical

Property Temperature Value Comment
Elastic modulus 20.0 °C Elastic modulus of 207 GPa -
- 100.0 °C Elastic modulus of 201 GPa -
- 200.0 °C Elastic modulus of 193 GPa -
- 300.0 °C Elastic modulus of 184 GPa -
- 400.0 °C Elastic modulus of 175 GPa -
- 500.0 °C Elastic modulus of 165 GPa -
- 600.0 °C Elastic modulus of 158 GPa -
- 700.0 °C Elastic modulus of 150 GPa -
Elongation 20.0 °C Elongation of 25 % -
Poisson's ratio 23.0 °C Poisson's ratio of 0.3 [-] Typical for Austenitic Stainless Steel
Shear modulus 23.0 °C Shear modulus of 77 GPa Typical for Austenitic Stainless Steel
Tensile strength 20.0 °C Tensile strength of 650 - 850 MPa -
- 50.0 °C Tensile strength of 610 MPa -
- 100.0 °C Tensile strength of 565 MPa -
- 150.0 °C Tensile strength of 530 MPa -
- 200.0 °C Tensile strength of 505 MPa -
- 250.0 °C Tensile strength of 490 MPa -
- 300.0 °C Tensile strength of 475 MPa -
- 350.0 °C Tensile strength of 465 MPa -
- 400.0 °C Tensile strength of 460 MPa -
- 450.0 °C Tensile strength of 450 MPa -
- 500.0 °C Tensile strength of 440 MPa -
- 550.0 °C Tensile strength of 430 MPa -
- 600.0 °C Tensile strength of 410 MPa -
- 650.0 °C Tensile strength of 390 MPa -
Yield strength Rp0.2 20.0 °C Yield strength Rp0.2 of 510 MPa -
- 50.0 °C Yield strength Rp0.2 of 490 MPa -
- 100.0 °C Yield strength Rp0.2 of 463 MPa -
- 150.0 °C Yield strength Rp0.2 of 446 MPa -
- 200.0 °C Yield strength Rp0.2 of 434 MPa -
- 250.0 °C Yield strength Rp0.2 of 423 MPa -
- 300.0 °C Yield strength Rp0.2 of 413 MPa -
- 350.0 °C Yield strength Rp0.2 of 405 MPa -
- 400.0 °C Yield strength Rp0.2 of 396 MPa -
- 450.0 °C Yield strength Rp0.2 of 391 MPa -
- 500.0 °C Yield strength Rp0.2 of 386 MPa -
- 550.0 °C Yield strength Rp0.2 of 378 MPa -
- 600.0 °C Yield strength Rp0.2 of 365 MPa -
- 650.0 °C Yield strength Rp0.2 of 346 MPa -

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