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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Relating Residual Stress and Substructural Evolution During Tensile Deformation of an Aluminum-Manganese Alloy
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Relating Residual Stress and Substructural Evolution During Tensile Deformation of an Aluminum-Manganese Alloy

机译:在铝 - 锰合金的拉伸变形过程中,在剩余应力和副学性演化中

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摘要

Interrupted tensile tests were coupled with ex situ measurements of residual stress and microtexture. The residual stress quantification involved measurements of six independent Laue spots and conversion of the interplanar spacings to the residual stress tensor. A clear orientation-dependent residual stress evolution emerged from the experiments and the numerical simulations. For the orientations undergoing negligible changes in rho(GND) (density of geometrically necessary dislocation), the residual stress developments appeared to be governed by the elastic stiffness of the grain clusters. For the others, the evolution of the residual stress and rho(GND) exhibited a clear orientation-dependent scaling. (C) The Minerals, Metals & Materials Society and ASM International 2017.
机译:中断的拉伸试验与剩余应力和微纹理的Ex原位测量相结合。 残余应力量化涉及六个独立Laue斑点的测量值,并将平面间距转化为残余应力张量。 从实验中出现了明确的取向依赖性残余应力演进和数值模拟。 对于rho(GND)的忽略变化(几何上必要的错位的密度)的定向,残余应力发展似乎受到晶粒簇的弹性刚度的管辖。 对于其他方式,残留应力和Rho(GND)的演变表现出明确的取向依赖性缩放。 (c)2017年矿物质,金属和材料协会和ASM国际。

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