能量学
材料科学
成核
晶界
倾斜(摄像机)
断开
凝聚态物理
晶界强化
方向(向量空间)
微观结构
曲面(拓扑)
偏斜
机械
变形(气象学)
位错
热力学
作者
Himanshu Joshi,Ian Chesser,Brandon Runnels,Nikhil Chandra Admal
出处
期刊:Acta Materialia
[Elsevier BV]
日期:2026-03-10
卷期号:310: 122066-122066
被引量:2
标识
DOI:10.1016/j.actamat.2026.122066
摘要
Grain boundaries (GBs) evolve by the nucleation and glide of disconnections, which are dislocations with a step character. In this work, motivated by recent success in predicting GB properties such as the shear coupling factor and mobility from the intrinsic properties of disconnections, we develop a systematic method to calculate the energy barriers for the nucleation and glide of individual disconnection modes under arbitrary driving forces and a quasi-2D setting. This method combines tools from bicrystallography to enumerate disconnection modes and the Nudged elastic band (NEB) method to calculate their energetics, yielding minimum energy paths and atomistic mechanisms for the nucleation and glide of each disconnection mode. We apply the method to accurately predict shear coupling factors of [ 0 0 1 ] symmetric tilt grain boundaries in Cu. Particular attention is paid to the boundaries where the dislocation-based disconnection nucleation model produces incorrect nucleation barriers. We demonstrate that the method can accurately compute energy barriers and predict shear-coupling factors in the low-temperature regime. For certain disconnection modes in which the assumptions underlying our method do not hold, we report upper bounds on the energy barriers for disconnection nucleation and glide. In addition, the NEB trajectories reveal interesting phenomena such as the dissociation of a higher energy mode into lower energy modes, and in some cases, shear coupling being mediated by partial disconnections , wherein the GB structure temporarily changes to a metastable state before reverting back to its original structure.
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