Dislocation motion in a random solid solution

M. Zaiser
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引用次数: 38

Abstract

Abstract The thermally activated motion of a dislocation through an array of randomly distributed solute atoms is studied. The influence of fluctuations in the solute density on the activation energy for dislocation motion is investigated, and the stress dependences of the effective activation energy and the activation volume are determined. It is shown that, in creep deformation, fluctuations in the activation energies may lead to a creep strain which increases with time according to a power law, with an exponent that increases linearly with increasing temperature. Implications of the calculated activation energy spectrum for low-frequency internal friction are discussed.
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随机固溶体中的位错运动
摘要研究了位错在随机分布的溶质原子阵列中的热激活运动。研究了溶质密度变化对位错运动活化能的影响,确定了有效活化能和激活体积的应力依赖性。结果表明,在蠕变变形中,活化能的波动可导致蠕变应变随时间呈幂律增加,随温度的升高呈指数线性增加。讨论了计算活化能谱对低频内摩擦的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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