EN 10149-3 Grade S355NC normalized or normalized formed (+N)
EN 10149-3 Grade S355NC normalized or normalized formed (+N) introduction
Normalized or normalized rolled, weldable steel for cold formed components like vehicle frames, axles and special sections.
Equivalent material: DIN QStE360N, BS HR43/35, IS FeE355, DIN 1.0977, EN QStE 360 N, EN 1.0977, DIN QStE 360 N, DIN S355NC, AFNOR S355NC, BS 43/35CS:43/35HR, BS 43/35HS, BS S355NC
EN 10149-3 Grade S355NC normalized or normalized formed (+N) general
Property |
Value |
Comment |
Density |
Density of 7.8 - 7.9 g/cm³ |
Typical for Low Carbon Steel |
EN 10149-3 Grade S355NC normalized or normalized formed (+N) thermal
Property |
Value |
Condition |
Related Standards |
Shape |
Comment |
Coefficient of thermal expansion |
Coefficient of thermal expansion of 1.32e-05 - 1.38e-05 1/K |
- |
- |
- |
Typical for Low Carbon Steel |
Max service temperature |
Max service temperature of -20 °C |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Long |
- |
Max service temperature of 500 °C |
- |
- |
- |
Typical for Carbon Steel |
Melting point |
Melting point of 1480 - 1526 °C |
- |
- |
- |
Typical for Low Carbon Steel |
Specific heat capacity |
Specific heat capacity of 465 J/(kg·K) |
- |
- |
- |
Typical for Low Carbon Steel |
Thermal conductivity |
Thermal conductivity of 25 - 93 W/(m·K) |
- |
- |
- |
Typical for Low Carbon Steel |
EN 10149-3 Grade S355NC normalized or normalized formed (+N) chemical
Property |
Value |
Condition |
Related Standards |
Shape |
Aluminium |
Aluminium of 0.015 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Carbon |
Carbon of 0.18 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Manganese |
Manganese of 1.6 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Niobium |
Niobium of 0.09 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Phosphorus |
Phosphorus of 0.025 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Silicon |
Silicon of 0.5 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Sulfur |
Sulfur of 0.015 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Titanium |
Titanium of 0.15 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
Vanadium |
Vanadium of 0.1 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
EN 10149-3 Grade S355NC normalized or normalized formed (+N) magnetic
Property |
Value |
Comment |
Curie temperature |
Curie temperature of 770 °C |
Typical for Low Carbon Steel |
EN 10149-3 Grade S355NC normalized or normalized formed (+N) electrical
Property |
Value |
Comment |
Electrical conductivity |
Electrical conductivity of 7 S/m |
Predicted Value |
Electrical resistivity |
Electrical resistivity of 1.43e-07 - 1.74e-07 Ω·m |
Typical for Carbon Steel |
EN 10149-3 Grade S355NC normalized or normalized formed (+N) mechanical
Property |
Temperature |
Value |
Condition |
Related Standards |
Shape |
Comment |
Elastic modulus |
- |
Elastic modulus of 200 - 215 GPa |
- |
- |
- |
Typical for Low Carbon Steel |
Elongation |
- |
Elongation of 17.4 % |
- |
- |
- |
Predicted Value, A200 |
- |
- |
Elongation of 19.6 % |
- |
- |
- |
Predicted Value, A80 Transverse |
- |
- |
Elongation of 20.9 % |
- |
- |
- |
Predicted Value, A5 |
- |
- |
Elongation of 21.2 % |
- |
- |
- |
Predicted Value, Transverse |
- |
- |
Elongation of 22.3 % |
- |
- |
- |
Predicted Value, A50 |
- |
20 °C |
Elongation of 20 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
A80 |
- |
20 °C |
Elongation of 20 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
- |
- |
20 °C |
Elongation of 25 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
A80 |
- |
20 °C |
Elongation of 25 % |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
- |
Hardness, Brinell |
- |
Hardness, Brinell of 242 [-] |
- |
- |
- |
Predicted Value, Transverse |
Poisson's ratio |
- |
Poisson's ratio of 0.29 [-] |
- |
- |
- |
Typical for Low Carbon Steel |
Reduction of area |
- |
Reduction of area of 40.4 % |
- |
- |
- |
Predicted Value |
- |
- |
Reduction of area of 44.4 % |
- |
- |
- |
Predicted Value, Transverse |
Shear modulus |
- |
Shear modulus of 82 GPa |
- |
- |
- |
Typical for Low Carbon Steel |
Shear strength |
- |
Shear strength of 531.2 MPa |
- |
- |
- |
Predicted Value |
Tensile strength |
20 °C |
Tensile strength of 470 - 610 MPa |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
- |
Yield strength |
- |
Yield strength of 253.6 MPa |
- |
- |
- |
Predicted Value, RP1 |
- |
- |
Yield strength of 316 MPa |
- |
- |
- |
Predicted Value, RP1 Transverse |
- |
- |
Yield strength of 355 MPa |
- |
- |
- |
Predicted Value, RP02 |
- |
- |
Yield strength of 361.7 MPa |
- |
- |
- |
Predicted Value, Transverse |
- |
- |
Yield strength of 444.3 MPa |
- |
- |
- |
Predicted Value, RP05 |
- |
- |
Yield strength of 487.8 MPa |
- |
- |
- |
Predicted Value, RP02 Transverse |
- |
- |
Yield strength of 490.4 MPa |
- |
- |
- |
Predicted Value, RP002 |
- |
20 °C |
Yield strength of 355 MPa |
normalized or normalized formed (+N) |
EN 10149-3 |
Flat |
- |
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