D50 vs D75
D75 is 1.6 times as stiff as D50. It is 1.4 times as dense. Per unit mass D75 is 1.1 times as stiff. Strength: f_m,k = 50 MPa for D50, f_m,k = 75 MPa for D75.
Side by side
ratio = D75 / D50 · log scale| Property | D50 | D75 | Unit | Ratio | ¼×1×4× |
|---|---|---|---|---|---|
| E₁ Modulus, direction 1 | 14 | 22 | GPa | 1.57× | |
| E₂ Modulus, direction 2 | 0.93 | 1.47 | GPa | 1.58× | |
| E₃ Modulus, direction 3 | 0.93 | 1.47 | GPa | 1.58× | |
| G₁₂ Shear modulus 1-2 | 0.88 | 1.38 | GPa | 1.57× | |
| G₁₃ Shear modulus 1-3 | 0.88 | 1.38 | GPa | 1.57× | |
| E₀,₀₅ Modulus parallel to grain, 5 % fractile | 11.8 | 18.5 | GPa | 1.57× | |
| ρ Density | 740 | 1020 | kg/m³ | 1.38× | |
| ρ_k Density, characteristic (5 % fractile) | 620 | 850 | kg/m³ | 1.37× | |
| f_m,k Bending strength | 50 | 75 | MPa | 1.5× | |
| f_t,0,k Tension parallel to grain | 30 | 45 | MPa | 1.5× | |
| f_t,90,k Tension perpendicular to grain | 0.6 | 0.6 | MPa | 1× | |
| f_c,0,k Compression parallel to grain | 30 | 37 | MPa | 1.23× | |
| f_c,90,k Compression perpendicular to grain | 6.2 | 12.8 | MPa | 2.06× | |
| f_v,k Shear strength | 4.5 | 5 | MPa | 1.11× | |
| E/ρ Specific stiffness E/ρ · derived | 18.92 | 21.57 | MJ/kg | 1.14× | |
| c₀ Bar wave speed √(E/ρ) · derived | 4350 | 4644 | m/s | 1.07× | |
| f/ρ Specific strength f/ρ · derived | 67.57 | 73.53 | kJ/kg | 1.09× |
Values at the first thickness band or product form of each material (EN 338:2016; EN 338:2016). 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.