Burgers向量
材料科学
成核
变形(气象学)
位错
原位
立方体(代数)
晶体孪晶
结晶学
分子动力学
复合材料
微观结构
几何学
热力学
物理
气象学
量子力学
化学
数学
作者
B.P. Eftink,A. Li,Izabela Szlufarska,Nathan A. Mara,I.M. Robertson
标识
DOI:10.1016/j.actamat.2017.07.051
摘要
The mechanisms of strain transfer across Ag/Cu interfaces were determined by a combination of in situ and ex situ TEM straining experiments and molecular dynamics simulations. Minimizing the magnitude of the Burgers vector of the residual dislocation generated in the interface was the dominant factor for determining the outcome of dislocation and deformation twin interactions with both non-coherent twin and cube-on-cube interfaces. This included the unexpected finding, due to the loading condition, of deformation twin activation in the Cu layer due to the intersection of deformation twins in Ag with the interface. Deformation twin nucleation in Ag from the non-coherent twin interfaces was also explained by a Burgers vector minimization argument.
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