EN 10270-2 Grade FDC oil quenched and tempered
EN 10270-2 Grade FDC oil quenched and tempered introduction
The round, oil hardened and tempered carbon steel wire FDC for static loading and low tensile strength is used mainly for torsion loaded springs (tension and compression springs).
It will be delivered in rings, in coils or as bars and, if not otherwise arranged, thin oiled.
Equivalent material: AS 1472, ISO FDC, DIN FD(1.1230), IS FDC, DIN 1.1230, DIN FD C, AFNOR FDC, BS FDC
EN 10270-2 Grade FDC oil quenched and tempered general
Property |
Temperature |
Value |
Comment |
Density |
23.0 °C |
Density of 7.8 - 7.9 g/cm³ |
Typical for High Carbon Steel |
EN 10270-2 Grade FDC oil quenched and tempered thermal
Property |
Temperature |
Value |
Comment |
Coefficient of thermal expansion |
23.0 °C |
Coefficient of thermal expansion of 1.32E-5 1/K |
Typical for High Carbon Steel |
Max service temperature |
- |
Max service temperature of 500 °C |
Typical for Carbon Steel |
Melting point |
- |
Melting point of 1289 - 1478 °C |
Typical for High Carbon Steel |
Specific heat capacity |
23.0 °C |
Specific heat capacity of 486 J/(kg·K) |
Typical for High Carbon Steel |
Thermal conductivity |
23.0 °C |
Thermal conductivity of 36 W/(m·K) |
Typical for High Carbon Steel |
EN 10270-2 Grade FDC oil quenched and tempered chemical
Property |
Value |
Carbon |
Carbon of 0.6 - 0.75 % |
Copper |
Copper of 0.12 % |
Manganese |
Manganese of 0.5 - 1.2 % |
Phosphorus |
Phosphorus of 0.03 % |
Silicon |
Silicon of 0.1 - 0.35 % |
Sulfur |
Sulfur of 0.025 % |
EN 10270-2 Grade FDC oil quenched and tempered electrical
Property |
Temperature |
Value |
Comment |
Electrical resistivity |
23.0 °C |
Electrical resistivity of 1.43E-7 - 1.74E-7 Ω·m |
Typical for Carbon Steel |
EN 10270-2 Grade FDC oil quenched and tempered mechanical
Property |
Temperature |
Value |
Comment |
Elastic modulus |
20.0 °C |
Elastic modulus of 206 GPa |
- |
Poisson's ratio |
23.0 °C |
Poisson's ratio of 0.29 [-] |
Typical for High Carbon Steel |
Reduction of area |
20.0 °C |
Reduction of area of 30 - 45 % |
- |
Shear modulus |
20.0 °C |
Shear modulus of 79.5 - 81.5 GPa |
- |
Tensile strength |
20.0 °C |
Tensile strength of 1250 - 2100 MPa |
- |
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