S275 vs S355
S355 and S275 are about equally stiff. Their densities are about the same. Per unit mass they are about equally stiff (26.75 and 26.75 MJ/kg). Strength: f_y = 275 MPa for S275, f_y = 355 MPa for S355.
Side by side
ratio = S355 / S275 · log scale| Property | S275 | S355 | Unit | Ratio | ¼×1×4× |
|---|---|---|---|---|---|
| E Young's modulus | 210 | 210 | GPa | 1× | |
| G Shear modulus | 81 | 81 | GPa | 1× | |
| ν Poisson's ratio | 0.3 | 0.3 | – | 1× | |
| ρ Density | 7850 | 7850 | kg/m³ | 1× | |
| α Coefficient of thermal expansion | 12 | 12 | 10⁻⁶/K | 1× | |
| λ Thermal conductivity | 53.33 | 53.33 | W/(m·K) | 1× | |
| c_p Specific heat capacity | 439.8 | 439.8 | J/(kg·K) | 1× | |
| f_y Yield strength (R_eH / R_p0.2) | 275 | 355 | MPa | 1.29× | |
| f_u Tensile strength (R_m) | 410 | 470 | MPa | 1.15× | |
| f_u,max Tensile strength, upper limit | 560 | 630 | MPa | 1.12× | |
| f_y (T3.1) Yield strength, EN 1993-1-1 Table 3.1 | 275 | 355 | MPa | 1.29× | |
| f_u (T3.1) Tensile strength, EN 1993-1-1 Table 3.1 | 430 | 490 | MPa | 1.14× | |
| E/ρ Specific stiffness E/ρ · derived | 26.75 | 26.75 | MJ/kg | 1× | |
| c₀ Bar wave speed √(E/ρ) · derived | 5172 | 5172 | m/s | 1× | |
| f/ρ Specific strength f/ρ · derived | 35.03 | 45.22 | kJ/kg | 1.29× |
Values at the first thickness band or product form of each material (EN 10025-2 · t ≤ 16 mm; EN 10025-2 · t ≤ 16 mm). A minimum and a characteristic value are not the same kind of number — read the ratio as a guide. Each material's page lists every band and every source.