The slope of this part of the curve determines the characteristic material – elastic modulus (Young's modulus). 130 MPa 18 x 10 3 psi. Shear Strength. 18 % Fatigue Strength. Modulus of Elasticity – and Ultimate Tensile and Yield Strength for steel, glass, wood and other common materials. Compression modulus is about 2% greater than tensile modulus. Modulus of Elasticity: 68.9 GPa: 10000 ksi AA; Typical; Average of tension and compression. Tensile Strength: Ultimate (UTS) 420 MPa 61 x 10 3 psi. The Young’s modulus of elasticity is the elastic modulus for tensile and compressive stress in the linear elasticity regime of a uniaxial deformation and is usually assessed by tensile tests. 0.33. 27 GPa 3.9 x 10 6 psi. The computed strain was plotted as a function of the stress (Figure 2). The modulus of elasticity of plastics is much smaller than that for metals or ceramics and glasses. Notched Tensile Strength: 324 MPa: 47000 psi 2.5 cm width x 0.16 cm thick side-notched specimen, K t = 17. 71 GPa 10 x 10 6 psi. 260 MPa 38 x 10 3 psi. The shear modulus, or the modulus of rigidity, is derived from the torsion of a cylindrical test piece. Looking for metals with Young's Modulus less than 20 GPa then you are at the right place. From the linear part of Figure 2, we obtained the Young’s modulus of 66.3 GPa, which is in very good agreement with the experimental value of 69 GPa. Elastic (Young's, Tensile) Modulus. Different forms and tempers of 6061 aluminum alloy are discussed in the following standards: ... Chat Now Send Inquiry; Young Modulus of Elasticity for Metals and Alloys. Modulus Young's Modulus = The figure can be seen, At the initial stage of the stress-strain curve of the increase in strain per unit stress increases in aluminum and aluminum alloy much faster, than steel - three times. 70 × 10 Pa), brass 90 GPa, copper 96 GPa, titanium alloy 110 GPa, mild steel 210 GPa, lead 18 GPa, tungsten 410 gpa, cast iron 110 GPa, zinc 85 GPa, glass. Aluminium alloy 70 GPa (i.e. Shear Modulus. Young’s Modulus or Tensile Modulus alt. The elastic moduli (Young's Modulus, shear modulus and Poisson's ratio) and damping of aluminum alloys can be accurately characterized by the non-destructive Sonelastic ® Systems testing at room temperature, as well as at low and high temperatures. The initial and final structures of this simulation are represented in Figure 1-a and b. Elongation at Break. Poisson's Ratio. Shear Modulus of Elasticity. Looking for metals with Young's Modulus less than 70 GPa then you are at the right place. 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