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Microstructural-Based Measurement of Local Stored Energy Variations in Deformed Metals

机译:基于微观结构的变形金属局部存储能量变化的测量

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摘要

Three single crystals of typical fcc rolling texture orientations—{112}<111> (C), {123}<634> (S), and {110}<112> (B)—have been deformed by plane strain compression at room temperature, and the stored energy of deformation in each has been calculated from measurements in the transmission electron microscope (TEM) of dislocation boundary spacings and misorientation angles. The stored energy has been determined on two length scales: the single crystal scale and, for orientations in which localized glide bands (LGBs) are present, on the local length scale. On the crystal scale, it is found that the stored energy shows a strong dependence on the crystallographic orientation; the highest is for the C orientation and the lowest is for the B orientation. For the C and S orientations, where LGBs develop during deformation, the differences in stored energy between the LGB and matrix regions can be as large as the differences between the average values for each single crystal. The observed variation of stored energy on the crystal scale and the local scale can be related to the experimental observations of the flow stress and to the recrystallization behavior of the three crystal orientations.
机译:典型的fcc滚动纹理取向的三个单晶-{112} <111>(C),{123} <634>(S)和{110} <112>(B)–在室温下已通过平面应变压缩而变形根据透射电子显微镜(TEM)中位错边界间距和取向错误角度的测量结果,可以计算出温度和每个位置的变形能量。已在两个长度尺度上确定了存储的能量:单晶尺度和在局部长度尺度上(对于存在局部滑移带(LGB)的取向)。在晶体尺度上,发现所存储的能量对晶体取向显示出强烈的依赖性​​。最高的是C方向,最低的是B方向。对于C和S方向,在变形过程中会产生LGB,LGB和基体区域之间的存储能量差异可能与每个单晶平均值之间的差异一样大。所观察到的储能在晶体尺度和局部尺度上的变化可以与流动应力的实验观察以及三个晶体取向的再结晶行为有关。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第13期|2329-2339|共11页
  • 作者单位

    Department of Materials Science and Engineering Tsinghua University Beijing 100084 People’s Republic of China;

    Materials Research Department Risø National Laboratory DK-4000 Roskilde Denmark;

    Materials Research Department Risø National Laboratory DK-4000 Roskilde Denmark;

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