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Elastic properties describe the reversible deformation (elastic response) of a material to an applied stress. They are a subset of the material properties that provide a quantitative description of the characteristics of a material, like its strength .
Young's modulus is defined as the ratio of the stress (force per unit area) applied to the object and the resulting axial strain (displacement or deformation) in the linear elastic region of the material. Although Young's modulus is named after the 19th-century British scientist Thomas Young, the concept was developed in 1727 by Leonhard Euler.
Aluminium alloys typically have an elastic modulus of about 70 GPa, which is about one-third of the elastic modulus of steel alloys. Therefore, for a given load, a component or unit made of an aluminium alloy will experience a greater deformation in the elastic regime than a steel part of identical size and shape.
Young's modulus (E) 68.9 GPa (9,990 ksi) Tensile strength ... AA 6063 is an aluminium alloy, with magnesium and silicon as the alloying elements.
5182 Aluminium alloy has magnesium and manganese as minor elements. 5182 Aluminium alloy is used in the automobile ... Young's modulus: 68 GPa Thermal properties ...
It is easily machined in certain tempers, and among the strongest available aluminium alloys, as well as having high hardness. However, it is difficult to weld, as it is subject to cracking. [2] 2014 is the second most popular of the 2000-series aluminium alloys, after 2024 aluminium alloy. It is commonly extruded and forged.
Young's modulus (E) 69.3 GPa (10,050 ksi) ... 5052 is an aluminium–magnesium alloy, primarily alloyed with magnesium and chromium. 5052 is not a heat treatable ...
6013 aluminium alloy consist of magnesium, silicon, copper, manganese, iron, ... Young's Modulus [2] 69 GPa Fatigue Strength [2] 98 to 140 MPa Applications.
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