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 S355UnitRatio¼×1×4×
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.