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Molecular dynamics simulations of grain boundary sliding: The effect of stress and boundary misorientation

机译:晶界滑动的分子动力学模拟:应力和边界取向错误的影响

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摘要

Molecular dynamics simulations were used to study the effect of applied force and grain boundary misorientation on grain boundary sliding in aluminum at 750 K. Two grains were oriented with their axes parallel to their boundary plane and one grain was rotated around its axis to various misorientation angles. For any given misorientation, increasing the applied force leads to three sliding behaviors: no sliding, constant velocity sliding and a parabolic sliding over time. The last behavior is associated with disordering of atoms along the grain boundary. For the second sliding behavior, the constant sliding velocity varied linearly with the applied stress. A linear fit of this relationship did not intersect the stress axis at the origin, implying that a threshold stress for sliding exists. This threshold stress was found to decrease with increasing grain boundary energy. The ramifications of this finding for modeling grain boundary sliding in polycrystals are discussed. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:采用分子动力学模拟研究了外加力和晶界取向误差对750 K下铝晶界滑动的影响。两个晶粒的轴平行于其边界平面取向,一个晶粒绕其轴旋转到不同的取向角。对于任何给定的取向错误,增加施加的力会导致三种滑动行为:无滑动、恒速滑动和随时间推移的抛物线滑动。最后一种行为与原子沿晶界的无序有关。对于第二种滑动行为,恒定滑动速度随施加的应力呈线性变化。这种关系的线性拟合没有与原点处的应力轴相交,这意味着存在滑动的阈值应力。该阈值应力随着晶界能的增加而减小。讨论了这一发现对多晶晶界滑动建模的影响。(c) 2006 Acta Materialia Inc.,由Elsevier Ltd.出版。保留所有权利。

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