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首页> 外文期刊>Scripta materialia >Insights into grain boundary energy structure-property relationships by examining computed [100] disorientation axis grain boundaries in Nickel
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Insights into grain boundary energy structure-property relationships by examining computed [100] disorientation axis grain boundaries in Nickel

机译:通过检查镍中的计算[100]迷惑轴晶界,通过检查晶界能量结构 - 性质关系的洞察

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摘要

A study of 346 computed [1 0 0] disorientation axis grain boundaries provides insight into grain boundary energy structure-property relationships. The grain boundaries come from 6 coincidence site lattice misorientations at regularly spaced disorientation angles, and cover the full range of boundary plane orientations. The computed energy has clear trends in disorientation angle and boundary plane orientation. The data are used to reexamine the 'special' attribute frequently applied to low Sigma coincidence site lattice misorientations and low-angle boundaries and to assess the accuracy of a face-centered cubic grain boundary energy function developed by Bulatov, Reed, and Kumar (Acta Mater. 65 (2014) 161-175). (C) 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:对346计算的[1 0 0]迷失化轴晶界的研究提供了对晶界能量结构的洞察力。 晶粒边界来自6个巧合的位点错位,定期间隔的迷失方角度,并覆盖了全系列边界面取向。 计算能量具有迷向角度和边界平面方向的明显趋势。 数据用于重新审视经常应用于低Sigma巧合点的“特殊”属性的“特殊”属性,并评估Bulatov,Reed和Kumar(Acta)开发的面中心立方晶界能量功能的准确性 母体。65(2014)161-175)。 (c)2020 Acta Materialia Inc. eSeryvier有限公司发布所有权利。

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