EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC)
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) introduction
The cold-upsettable steel Cq 22 can be cold-formed with medium to high rate of forming according to the usual forming methods on single-stage and multi-stage presses. It is used, for example, for spacer nuts, piston bolts, 5.6 screws and nuts of strength class 8.
Equivalent material: GB ML20, ISO C1, UNI CB20FF, JIS SWRCH20K, DIN C20E2C, DIN 1.1152, JIS SWCH20K, EN 1.1152
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) general
Property |
Temperature |
Value |
Density |
20.0 °C |
Density of 7.85 g/cm³ |
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) 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 1.25E-5 1/K |
- |
- |
200.0 °C |
Coefficient of thermal expansion of 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 1.41E-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 461 J/(kg·K) |
- |
- |
100.0 °C |
Specific heat capacity of 479 J/(kg·K) |
- |
- |
200.0 °C |
Specific heat capacity of 499 J/(kg·K) |
- |
- |
300.0 °C |
Specific heat capacity of 517 J/(kg·K) |
- |
- |
400.0 °C |
Specific heat capacity of 536 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 |
20.0 °C |
Thermal conductivity of 56.9 W/(m·K) |
- |
- |
100.0 °C |
Thermal conductivity of 56.4 W/(m·K) |
- |
- |
200.0 °C |
Thermal conductivity of 53.5 W/(m·K) |
- |
- |
300.0 °C |
Thermal conductivity of 49.4 W/(m·K) |
- |
- |
400.0 °C |
Thermal conductivity of 45.2 W/(m·K) |
- |
- |
500.0 °C |
Thermal conductivity of 41.3 W/(m·K) |
- |
- |
600.0 °C |
Thermal conductivity of 37.6 W/(m·K) |
- |
Thermal diffusivity |
20.0 °C |
Thermal diffusivity of 15.7 mm²/s |
- |
- |
100.0 °C |
Thermal diffusivity of 14.5 mm²/s |
- |
- |
200.0 °C |
Thermal diffusivity of 12.9 mm²/s |
- |
- |
300.0 °C |
Thermal diffusivity of 11.2 mm²/s |
- |
- |
400.0 °C |
Thermal diffusivity of 9.6 mm²/s |
- |
- |
500.0 °C |
Thermal diffusivity of 7.9 mm²/s |
- |
- |
600.0 °C |
Thermal diffusivity of 6.3 mm²/s |
- |
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) chemical
Property |
Value |
Carbon |
Carbon of 0.17 - 0.24 % |
Manganese |
Manganese of 0.3 - 0.6 % |
Phosphorus |
Phosphorus of 0.04 % |
Silicon |
Silicon of 0.4 % |
Sulfur |
Sulfur of 0.035 % |
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) magnetic
Property |
Value |
Comment |
Curie temperature |
Curie temperature of 770 °C |
Typical for Low Carbon Steel |
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) electrical
Property |
Temperature |
Value |
Electrical resistivity |
20.0 °C |
Electrical resistivity of 1.83E-7 Ω·m |
- |
100.0 °C |
Electrical resistivity of 2.27E-7 Ω·m |
- |
200.0 °C |
Electrical resistivity of 2.95E-7 Ω·m |
- |
300.0 °C |
Electrical resistivity of 3.8E-7 Ω·m |
- |
400.0 °C |
Electrical resistivity of 4.81E-7 Ω·m |
- |
500.0 °C |
Electrical resistivity of 5.99E-7 Ω·m |
- |
600.0 °C |
Electrical resistivity of 7.38E-7 Ω·m |
EN 10263-4 Grade Cq22 annealed to achieve spheroidized carbides (+AC) mechanical
Property |
Temperature |
Value |
Comment |
Elastic modulus |
-100.0 °C |
Elastic modulus of 217 GPa |
- |
- |
20.0 °C |
Elastic modulus of 212 GPa |
- |
- |
100.0 °C |
Elastic modulus of 207 GPa |
- |
- |
200.0 °C |
Elastic modulus of 199 GPa |
- |
- |
300.0 °C |
Elastic modulus of 192 GPa |
- |
- |
400.0 °C |
Elastic modulus of 184 GPa |
- |
- |
500.0 °C |
Elastic modulus of 175 GPa |
- |
- |
600.0 °C |
Elastic modulus of 164 GPa |
- |
Poisson's ratio |
20.0 °C |
Poisson's ratio of 0.28 [-] |
- |
Reduction of area |
20.0 °C |
Reduction of area of 64 % |
- |
Shear modulus |
23.0 °C |
Shear modulus of 82 GPa |
Typical for Low Carbon Steel |
Tensile strength |
20.0 °C |
Tensile strength of 500 MPa |
- |
Drive progress and development with our high-performance steel materials.
-- Our promise
Similar or equivalent steel materials
Get a quote