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首页> 外文期刊>American Journal of Civil Engineering and Architecture >Correlation between Engineering Stress-Strain and True Stress-Strain Curve
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Correlation between Engineering Stress-Strain and True Stress-Strain Curve

机译:工程应力-应变曲线与真实应力-应变曲线的相关性

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The most commonly accepted method in evaluation of the mechanical properties of metals would be the tension test. Its main objective would be to determine the properties relevant to the elastic design of machines and structures. Investigation of the engineering and true Stress-strain relationships of three specimens in conformance with ASTM E 8 – 04 is the aim of this paper. For the purpose of achieving this aim, evaluation of values such as ultimate tensile strength, yield strength, percentage of elongation and area reduction, fracture strain and Young's Modulus was done once the specimens were subjected to uniaxial tensile loading. The results indicate that the properties of steel materials are independent from their thickness and they generally yield and fail at the same stress and strain values. Also, it is concluded that the maximum true stress values are almost 15% higher than that of the maximum engineering stress values while the maximum true strain failure values are 1.5% smaller than the maximum engineering strain failure values.
机译:评估金属机械性能最普遍接受的方法是拉伸试验。其主要目的是确定与机器和结构的弹性设计有关的特性。本文旨在研究符合ASTM E 8 – 04的三个试样的工程和真实应力-应变关系。为了达到这个目的,一旦样品经受了单轴拉伸载荷,就进行了诸如极限拉伸强度,屈服强度,伸长率和面积减小率,断裂应变和杨氏模量的值的评估。结果表明,钢材的性能与其厚度无关,并且它们通常在相同的应力和应变值下屈服和破坏。而且,可以得出结论,最大真实应力值比最大工程应力值高出将近15%,而最大真实应变破坏值比最大工程应变破坏值要小1.5%。

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