EN 10263-4 Grade 34CrMo4: Annealed for Spheroidized Carbides and Precision Turning
The cold-upsettable steel 34 CrMo 4 can be cold-formed with a medium to high rate of forming according to the usual forming methods on single-stage and multi-stage presses. It is used for hexagon screws and hexagon socket head cap screw of strength class 8.8 in the thick dimension range, of strength class 10.9 in the medium and of strength class 12.9 in the thin dimension range it is used for high-strength parts manufactured according to drawings.
Properties
General
| Property | Temperature | Value |
|---|---|---|
Density | 20.0 °C | 7.81 g/cm³ |
Mechanical
| Property | Temperature | Value |
|---|---|---|
Elastic modulus | -100.0 °C | 217 GPa |
20.0 °C | 210.27 - 212 GPa | |
100.0 °C | 205.17 - 207 GPa | |
200.0 °C | 198.68 - 199 GPa | |
300.0 °C | 191.11 - 192 GPa | |
400.0 °C | 182.31 - 184 GPa | |
500.0 °C | 171.64 - 175 GPa | |
600.0 °C | 164 GPa | |
Poisson's ratio | 20.0 °C | 0.28 [-] |
100.0 °C | 0.29 [-] | |
200.0 °C | 0.3 [-] | |
300.0 °C | 0.3 [-] | |
400.0 °C | 0.3 [-] | |
500.0 °C | 0.31 [-] | |
Reduction of area | 20.0 °C | 59 % |
Shear modulus | 20.0 °C | 81.88 GPa |
100.0 °C | 79.57 GPa | |
200.0 °C | 76.63 GPa | |
300.0 °C | 73.54 GPa | |
400.0 °C | 69.99 GPa | |
500.0 °C | 65.66 GPa | |
Tensile strength | 20.0 °C | 610 MPa |
Thermal
| Property | Temperature | Value | Comment |
|---|---|---|---|
Coefficient of thermal expansion | -100.0 °C | 1.05E-5 1/K | |
20.0 °C | 1.15E-5 1/K | ||
100.0 °C | 1.21E-5 1/K | ||
200.0 °C | 1.27E-5 1/K | ||
300.0 °C | 1.32E-5 1/K | ||
400.0 °C | 1.36E-5 1/K | ||
500.0 °C | 1.4E-5 1/K | ||
600.0 °C | 1.44E-5 1/K | ||
Melting point | 1382 - 1529 °C | Typical for Chromium Molybdenum Steel | |
Specific heat capacity | -100.0 °C | 423 J/(kg·K) | |
20.0 °C | 461 J/(kg·K) | ||
100.0 °C | 479 J/(kg·K) | ||
200.0 °C | 499 J/(kg·K) | ||
300.0 °C | 517 J/(kg·K) | ||
400.0 °C | 536 J/(kg·K) | ||
500.0 °C | 558 J/(kg·K) | ||
600.0 °C | 587 J/(kg·K) | ||
Thermal conductivity | 20.0 °C | 39.6 W/(m·K) | |
100.0 °C | 41.6 W/(m·K) | ||
200.0 °C | 41.8 W/(m·K) | ||
300.0 °C | 40.3 W/(m·K) | ||
400.0 °C | 38.2 W/(m·K) | ||
500.0 °C | 36 W/(m·K) | ||
600.0 °C | 33.6 W/(m·K) | ||
Thermal diffusivity | 20.0 °C | 11 mm²/s | |
100.0 °C | 10.8 mm²/s | ||
200.0 °C | 10.1 mm²/s | ||
300.0 °C | 9.2 mm²/s | ||
400.0 °C | 8.1 mm²/s | ||
500.0 °C | 7 mm²/s | ||
600.0 °C | 5.7 mm²/s | ||
Electrical
| Property | Temperature | Value |
|---|---|---|
Electrical resistivity | 20.0 °C | 2.63E-7 Ω·m |
100.0 °C | 3.08E-7 Ω·m | |
200.0 °C | 3.78E-7 Ω·m | |
300.0 °C | 4.66E-7 Ω·m | |
400.0 °C | 5.69E-7 Ω·m | |
500.0 °C | 6.87E-7 Ω·m | |
600.0 °C | 8.26E-7 Ω·m | |
Chemical properties
| Property | Value |
|---|---|
Carbon | 0.3 - 0.37 % |
Chromium | 0.9 - 1.2 % |
Manganese | 0.6 - 0.9 % |
Molybdenum | 0.15 - 0.3 % |
Phosphorus | 0.04 % |
Silicon | 0.4 % |
Sulfur | 0.035 % |
Metal
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