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Experimental Verification of An Endochronic Theory Accounting for Deformation Induced Anisotropy of Metals

机译:关于金属引起的各向异性的内时理论的实验验证

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This paper is devoted to evalauting an endochronic theory accounted for deformation induced anisotropy. To this end, experimental data obtained by Wu and Yeh~12 for 304 stainless steel subjected to proportionally axial-torsional loading were employed for comparison with theoretical resutls. In this paper, the endochronic theory of plasticity is briefly reviewed. The method leading to describe the subsequent yield surface is presented. Comparisons between the theoretical and experimental results are presented and discussed. The result has shown that the theory leading to anisotropic yield function can reasonably describe plastic behavior of the subsequent yield surface in the axial-torsional space. In particular, the theory can predict quantitatively well the Bauschinger effect, reflecting to the 'knee' portion of the stress-strain hysteresis loops.
机译:这篇论文致力于颠覆关于形变引起的各向异性的内时理论。为此,使用Wu和Yeh〜12获得的304不锈钢按比例的轴向扭转载荷的实验数据与理论结果进行了比较。在本文中,对塑性的内时理论进行了简要回顾。提出了描述随后的屈服面的方法。提出并讨论了理论和实验结果之间的比较。结果表明,导致各向异性屈服函数的理论可以合理地描述轴向扭转空间中后续屈服面的塑性行为。特别地,该理论可以很好地定量预测鲍辛格效应,反映到应力应变滞后回线的“膝盖”部分。

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