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Young’s modulus enables the calculation of the change in the dimension of a bar made of an isotropic elastic material under tensile or compressive loads. For instance, it predicts how much a material sample extends under tension or shortens under compression.
It is convenient to express the elasticity of a material with the ratio stress to strain, a parameter also termed as the tensile elastic modulus or Young’s modulus of the material – usually with the symbol – E. Young’s modulus can be used to predict the elongation or compression of an object.
As TTAC explains it (and without digging too deeply into chemistry and metallurgy), the issue with the aluminum alloy provided has to do with its elastic modulus – defined by the minds of Wikipedia as.
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6061-T6 aluminum is 6061 aluminum in the T6 temper. To achieve this temper, the metal is solution heat-treated and artificially aged until it meets standard mechanical property requirements. The graph bars on the material properties cards below compare 6061-T6 aluminum to: 6000-series alloys (top), all aluminum alloys (middle), and the entire.
For comparison, aluminium has a Young’s Modulus of 69 GPa and aerospace grade aluminium alloy can have tensile strengths up to around 500 MPa. However, polythene has a density of less than 1000 kg/m3.
The Young modulus is important for the structural behaviour. Its value is about one third that of steel, but contrary to density, this is a disadvantage compared to steel. The low value of the Young modulus has a big influence on the deformations of an aluminum structure.
The modulus of elasticity (also known as the elastic modulus, the tensile modulus, or Young’s modulus) defined as the slope of its stress-strain curve in the elastic deformation region. where stress is the force causing the deformation divided by.
This article demonstrates the use of instrumented indentation to quantify the in-situ Young’s modulus and strain-rate sensitivity of a standard lead. can be utilized to characterize creep in metals.
Modulus of elasticity (or also referred to as Young’s modulus) is the ratio of stress to strain in elastic range of deformation. For typical metals, modulus of elasticity is in the range between 45 GPa (6.5 x 10 6 psi) to 407 GPa (59 x 10 6 psi). Modulus of Elasticity Values for Metals