EN 1.0070 (E360) Non-Alloy Steel
Carbon & Non-Alloy Steels
Property Overview
Density7.9g/cm³
Elastic Modulus190GPa
Tensile Strength740MPa
Yield Strength360MPa
Brinell Hardness210HB
Maximum Service Temperature400°C
Chemical Composition
N
0 to 0.014%
P
0 to 0.055%
S
0 to 0.055%
FE
99.876 to 100%
Mechanical
A - Min. elongation Lo = 5,65 √ So (%) parallel,
11
A - Min. elongation Lo = 5,65 √ So (%) parallel,
10
A - Min. elongation Lo = 5,65 √ So (%) parallel,
9
A - Min. elongation Lo = 5,65 √ So (%) parallel,
8
A - Min. elongation Lo = 5,65 √ So (%) parallel,
7
A - Min. elongation Lo = 80 mm (%) parallel,
4
A - Min. elongation Lo = 80 mm (%) parallel,
5
A - Min. elongation Lo = 80 mm (%) parallel,
6
A - Min. elongation Lo = 80 mm (%) parallel,
7
A - Min. elongation Lo = 80 mm (%) parallel,
8
Elastic (Young's, Tensile) Modulus
190 GPa
Elongation at Break
9.1 %
Fatigue Strength
210 MPa
Poisson's Ratio
0.29
ReH - Minimum yield strength (MPa) flat and long products
360
ReH - Minimum yield strength (MPa) flat and long products
355
ReH - Minimum yield strength (MPa) flat and long products
345
ReH - Minimum yield strength (MPa) flat and long products
335
ReH - Minimum yield strength (MPa) flat and long products
325
ReH - Minimum yield strength (MPa) flat and long products
305
ReH - Minimum yield strength (MPa) flat and long products
295
Shear Modulus
73 GPa
Shear Strength
440 MPa
Tensile Strength: Ultimate (UTS)
740 MPa
Tensile Strength: Yield (Proof)
350 MPa
Hardness
Brinell Hardness
210
Physical
Density
7.9 g/cm 3
Thermal
Latent Heat of Fusion
250 J/g
Maximum Temperature: Mechanical
400 °C
Melting Completion (Liquidus)
1470 °C
Melting Onset (Solidus)
1430 °C
Specific Heat Capacity
470 J/kg-K
Thermal Conductivity
53 W/m-K
Thermal Diffusivity
14 mm 2 /s
Thermal Expansion
12 µm/m-K
Thermal Shock Resistance
23 points
Electrical
Electrical Conductivity: Equal Volume
6.8 % IACS
Electrical Conductivity: Equal Weight (Specific)
7.8 % IACS
Other
Nominal thickness (mm):
to 16
Nominal thickness (mm):
16 - 40
Nominal thickness (mm):
40 - 63
Nominal thickness (mm):
63 - 80
Nominal thickness (mm):
80 - 100
Nominal thickness (mm):
100 - 150
Nominal thickness (mm):
150 - 200
Nominal thickness (mm):
to 1
Nominal thickness (mm):
1 - 1.5
Nominal thickness (mm):
1.5 - 2
Nominal thickness (mm):
2 - 2.5
Nominal thickness (mm):
2.5 - 3
Nominal thickness (mm):
3 - 40
Nominal thickness (mm):
63 - 100
Nominal thickness (mm):
150 - 250
Calculated
Resilience: Ultimate (Unit Rupture Work)
56 MJ/m 3
Resilience: Unit (Modulus of Resilience)
320 kJ/m 3
Stiffness to Weight: Axial
13 points
Stiffness to Weight: Bending
24 points
Strength to Weight: Axial
26 points
Strength to Weight: Bending
23 points
Environmental
Base Metal Price
1.7 % relative
Embodied Carbon
1.4 kg CO 2 /kg material
Embodied Energy
18 MJ/kg
Embodied Energy
18 MJ/kg 7.7 x 10 3 BTU/lb
Embodied Water
45 L/kg
Embodied Water
45 L/kg 5.3 gal/lb
Registered Designations & Aliases
1.00701.0070E360E360EN 1.0070 (E360) Non-Alloy Steel
Standards
EN 10025-2 EN 10025-2: 2004 Hot rolled products of structural steels. Technical delivery conditions for non-alloy structural steels
EN 10025-2 EN 10025-2: Hot rolled products of structural steels - Part 2: Technical delivery conditions for non-alloy structural steels