DIN 1651 Grade 9SMn36 cold drawn
DIN 1651 Grade 9SMn36 cold drawn introduction
The balanced machining steel 9 SMn 36 is used for higher demands on the cutting capacity and surface condition. The steel shows a elevated crack sensitivity.
Application: limited in the automotive engineering, toolbuilding, apparatus engineering
Equivalent material: AFNOR S300, BS 240M07, ISO 12SMn35, UNI CF9SMn36, JIS SUM25, SS 1912-04, VSM 9SMn36, UNE F.2113-12SMn35, SAE 1215, DIN 11SMn37, DIN 1.0736, AFNOR 11SMn37, BS 11SMn37, AISI 1215, JIS 12SMn35, EN 11SMn37, EN 1.0736, ISO 11SMn37, ASTM 1215, UNS G12150
DIN 1651 Grade 9SMn36 cold drawn general
Property |
Temperature |
Value |
Density |
20.0 °C |
Density of 7.83 - 7.85 g/cm³ |
DIN 1651 Grade 9SMn36 cold drawn thermal
Property |
Temperature |
Value |
Comment |
Coefficient of thermal expansion |
-100.0 °C |
Coefficient of thermal expansion of 1.08E-5 1/K |
- |
- |
20.0 °C |
Coefficient of thermal expansion of 1.19E-5 1/K |
- |
- |
100.0 °C |
Coefficient of thermal expansion of 1.1E-5 - 1.25E-5 1/K |
- |
- |
200.0 °C |
Coefficient of thermal expansion of 1.18E-5 - 1.3E-5 1/K |
- |
- |
300.0 °C |
Coefficient of thermal expansion of 1.36E-5 1/K |
- |
- |
400.0 °C |
Coefficient of thermal expansion of 1.32E-5 - 1.41E-5 1/K |
- |
- |
500.0 °C |
Coefficient of thermal expansion of 1.45E-5 1/K |
- |
- |
600.0 °C |
Coefficient of thermal expansion of 1.49E-5 1/K |
- |
Max service temperature |
- |
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 |
-100.0 °C |
Specific heat capacity of 423 J/(kg·K) |
- |
- |
20.0 °C |
Specific heat capacity of 460 - 461 J/(kg·K) |
- |
- |
100.0 °C |
Specific heat capacity of 479 - 480 J/(kg·K) |
- |
- |
200.0 °C |
Specific heat capacity of 499 - 520 J/(kg·K) |
- |
- |
300.0 °C |
Specific heat capacity of 517 J/(kg·K) |
- |
- |
400.0 °C |
Specific heat capacity of 536 - 610 J/(kg·K) |
- |
- |
500.0 °C |
Specific heat capacity of 558 J/(kg·K) |
- |
- |
600.0 °C |
Specific heat capacity of 587 J/(kg·K) |
- |
Thermal conductivity |
-100.0 °C |
Thermal conductivity of 37.6 W/(m·K) |
- |
- |
20.0 °C |
Thermal conductivity of 42.2 - 54.4 W/(m·K) |
- |
- |
100.0 °C |
Thermal conductivity of 43.2 W/(m·K) |
- |
- |
200.0 °C |
Thermal conductivity of 42.9 W/(m·K) |
- |
- |
300.0 °C |
Thermal conductivity of 41.2 W/(m·K) |
- |
- |
400.0 °C |
Thermal conductivity of 39.1 W/(m·K) |
- |
- |
500.0 °C |
Thermal conductivity of 36.6 W/(m·K) |
- |
- |
600.0 °C |
Thermal conductivity of 34.1 W/(m·K) |
- |
Thermal diffusivity |
-100.0 °C |
Thermal diffusivity of 12.9 mm²/s |
- |
- |
20.0 °C |
Thermal diffusivity of 11.7 mm²/s |
- |
- |
100.0 °C |
Thermal diffusivity of 11.2 mm²/s |
- |
- |
200.0 °C |
Thermal diffusivity of 10.3 mm²/s |
- |
- |
300.0 °C |
Thermal diffusivity of 9.4 mm²/s |
- |
- |
400.0 °C |
Thermal diffusivity of 8.3 mm²/s |
- |
- |
500.0 °C |
Thermal diffusivity of 7.1 mm²/s |
- |
- |
600.0 °C |
Thermal diffusivity of 5.7 mm²/s |
- |
DIN 1651 Grade 9SMn36 cold drawn chemical
Property |
Value |
Carbon |
Carbon of 0.15 % |
Manganese |
Manganese of 1.1 - 1.5 % |
Phosphorus |
Phosphorus of 0.1 % |
Silicon |
Silicon of 0.05 % |
Sulfur |
Sulfur of 0.34 - 0.4 % |
DIN 1651 Grade 9SMn36 cold drawn magnetic
Property |
Value |
Comment |
Curie temperature |
Curie temperature of 770 °C |
Typical for Low Carbon Steel |
DIN 1651 Grade 9SMn36 cold drawn electrical
Property |
Temperature |
Value |
Electrical resistivity |
-100.0 °C |
Electrical resistivity of 1.82E-7 Ω·m |
- |
20.0 °C |
Electrical resistivity of 1.1E-7 - 2.47E-7 Ω·m |
- |
100.0 °C |
Electrical resistivity of 2.96E-7 Ω·m |
- |
200.0 °C |
Electrical resistivity of 3.68E-7 Ω·m |
- |
300.0 °C |
Electrical resistivity of 4.55E-7 Ω·m |
- |
400.0 °C |
Electrical resistivity of 5.56E-7 Ω·m |
- |
500.0 °C |
Electrical resistivity of 6.75E-7 Ω·m |
- |
600.0 °C |
Electrical resistivity of 8.13E-7 Ω·m |
DIN 1651 Grade 9SMn36 cold drawn mechanical
Property |
Temperature |
Value |
Comment |
Elastic modulus |
-100.0 °C |
Elastic modulus of 217 GPa |
- |
- |
20.0 °C |
Elastic modulus of 210 - 212 GPa |
- |
- |
100.0 °C |
Elastic modulus of 207 GPa |
- |
- |
200.0 °C |
Elastic modulus of 193 - 199 GPa |
- |
- |
300.0 °C |
Elastic modulus of 185 - 192 GPa |
- |
- |
400.0 °C |
Elastic modulus of 175 - 184 GPa |
- |
- |
500.0 °C |
Elastic modulus of 175 GPa |
- |
- |
600.0 °C |
Elastic modulus of 164 GPa |
- |
Elongation |
20.0 °C |
Elongation of 6 - 10 % |
- |
Poisson's ratio |
23.0 °C |
Poisson's ratio of 0.29 [-] |
Typical for Low Carbon Steel |
Shear modulus |
20.0 °C |
Shear modulus of 81 GPa |
- |
Tensile strength |
20.0 °C |
Tensile strength of 390 - 800 MPa |
- |
Yield strength |
20.0 °C |
Yield strength of 265 - 440 MPa |
- |
Our steel is the foundation for safe and reliable infrastructure projects.
-- Our promise
Similar or equivalent steel materials
Get a quote