Description Overview 8011A-H14 aluminum Alloy Composition Aluminum (Al): 97.5 to 99.1% Iron (Fe): 0.5 to 1.0% Silicon (Si): 0.4 to 0.8% Manganese (Mn): 0 to 0.1% Chromium (Cr): 0 to 0.1% Zinc (Zn): 0 to 0.1% Copper (Cu): 0 to 0.1% Magnesium (Mg): 0 to 0.1% Titanium (Ti): 0 to 0.050% Residuals: 0 to 0.15% All values are % weight. Ranges represent what is permitted under applicable standards. Mechanical Properties Brinell hardness: 41 Elastic (Young’s, tensile) modulus: 69 GPa (10 x 106 psi) Elongation at break: 3.4% Fatigue strength: 58 MPa (8.5 x 103 psi) Poisson’s ratio: 0.33 Shear modulus: 26 GPa (3.8 x 106 psi) Tensile strength, ultimate (UTS): 140 MPa (20 x 103 psi) Tensile strength, yield (proof): 120 MPa (18 x 103 psi) Thermal Properties Latent heat of fusion: 400 J/g Maximum temperature, mechanical: 170° C, 340° F Melting completion (liquidus): 650° C, 1190° F Melting onset (solidus): 630° C, 1170° F Specific heat capacity: 900 J/kg-K (0.21 BTU/lb-°F) Thermal conductivity: 210 W/m-K (120 BTU/h-ft-°F) Thermal expansion: 23 µm/m-K Electrical Properties Electrical conductivity, equal volume: 56% IACS Electrical conductivity, equal weight (specific): 180% IACS Other Properties Base metal price: 9.0% relative Density: 2.7 g/cm3 (170 lb/ft3) Embodied carbon: 8.2 kg CO2/kg material Embodied energy: 150 MJ/kg (66 x 103 BTU/lb) Embodied water: 1180 L/kg (140 gal/lb) Common Calculations Resilience, ultimate (unit rupture work): 4.6 MJ/m3 Resilience, unit (modulus of resilience): 110 kJ/m3 Stiffness to weight, axial: 14 points Stiffness to weight, bending: 50 points Strength to weight, axial: 14 points Strength to weight, bending: 22 points Thermal diffusivity: 86 m2/s Thermal shock resistance: 6.2 points SpecificationsCapacity: 200 Tons TotalDimensions: 0.50mm to 1.00mm thickness, 1000mm to 1300mm widthExternal roll diameter: Up to 1144mmInternal roll diameter: 500mmMinimum order quantity: 1 container (20 Ton)