EN 10139 Grade DC06 Cold Rolled Low-Carbon Steel – Skin Passed
Cold rolled uncoated low carbon steel narrow strip for cold forming.,The non-alloy steel DC06 (IF18) is suitable for highest deformation requirements and complex cold formed components. Products made of DC06 do not show any stretcher strains. Welding: DC06 is weldable by the following welding methods: MAG (metal-active-gas), plasma welding, laser welding, compression weld welding, resistance welding (spot, roll weld, buckle welding), arc welding. The steel acts as substrate for surface refined and coated bands and sheets. Application of DC06: construction trade, car manufacturing, traffic system. Acc. to DIN EN 10139 DC06 is offered as cold rolled band or bar, cut in strength range HK270.
Properties
General
| Property | Temperature | Value |
|---|---|---|
Density | 20.0 °C | 7.85 g/cm³ |
Mechanical
| Property | Temperature | Value | Comment |
|---|---|---|---|
Elastic modulus | -100.0 °C | 217 GPa | |
20.0 °C | 212 GPa | ||
100.0 °C | 207 GPa | ||
200.0 °C | 199 GPa | ||
300.0 °C | 192 GPa | ||
400.0 °C | 184 GPa | ||
500.0 °C | 175 GPa | ||
600.0 °C | 164 GPa | ||
Elongation | 20.0 °C | 40 % | |
Elongation A50 | 20.0 °C | 32 - 40 % | |
Elongation A80 | 20.0 °C | 30 - 38 % | |
Poisson's ratio | 20.0 °C | 0.29 [-] | Typical for Low Carbon Steel |
Tensile strength | 20.0 °C | 270 - 350 MPa | |
Yield strength | 20.0 °C | 120 - 210 MPa | |
Thermal
| Property | Temperature | Value | Comment |
|---|---|---|---|
Coefficient of thermal expansion | -100.0 °C | 1.08E-5 1/K | |
20.0 °C | 1.19E-5 1/K | ||
100.0 °C | 1.25E-5 1/K | ||
200.0 °C | 1.3E-5 1/K | ||
300.0 °C | 1.36E-5 1/K | ||
400.0 °C | 1.41E-5 1/K | ||
500.0 °C | 1.45E-5 1/K | ||
600.0 °C | 1.49E-5 1/K | ||
Melting point | 1480 - 1526 °C | Typical for Low Carbon 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 | 57.5 W/(m·K) | |
100.0 °C | 55.7 W/(m·K) | ||
200.0 °C | 51.9 W/(m·K) | ||
300.0 °C | 47.6 W/(m·K) | ||
400.0 °C | 43.4 W/(m·K) | ||
500.0 °C | 39.6 W/(m·K) | ||
600.0 °C | 36 W/(m·K) | ||
Thermal diffusivity | 20.0 °C | 15.9 mm²/s | |
100.0 °C | 14.3 mm²/s | ||
200.0 °C | 12.5 mm²/s | ||
300.0 °C | 10.8 mm²/s | ||
400.0 °C | 9.2 mm²/s | ||
500.0 °C | 7.6 mm²/s | ||
600.0 °C | 6.1 mm²/s | ||
Electrical
| Property | Temperature | Value |
|---|---|---|
Electrical resistivity | 20.0 °C | 1.1E-7 Ω·m |
100.0 °C | 2.3E-7 Ω·m | |
200.0 °C | 3.04E-7 Ω·m | |
300.0 °C | 3.94E-7 Ω·m | |
400.0 °C | 5.01E-7 Ω·m | |
500.0 °C | 6.25E-7 Ω·m | |
600.0 °C | 7.7E-7 Ω·m | |
Magnetic
| Property | Value | Comment |
|---|---|---|
Curie temperature | 770 °C | Typical for Low Carbon Steel |
Chemical properties
| Property | Value |
|---|---|
Carbon | 0.02 % |
Manganese | 0.25 % |
Phosphorus | 0.02 % |
Sulfur | 0.02 % |
Titanium | 0.3 % |
Metal
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