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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Interaction of run-in edge dislocations with twist grain boundaries in Al-a molecular dynamics study
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Interaction of run-in edge dislocations with twist grain boundaries in Al-a molecular dynamics study

机译:Al-a分子动力学研究中磨合边缘位错与扭曲晶界的相互作用

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Grain boundaries play an important role in outlining the mechanical properties of crystalline materials. They act as sites for absorptionucleation of dislocations, which are the main carriers of plastic deformation. In view of this, the interactions between edge dislocations and twist grain boundaries-dislocation pileup, dislocation absorption and dislocation emission were explored by performing molecular dynamics simulations in face-centered cubic Al using embedded atommethod. The < 110 > twist grain boundaries with various misorientation angles were selected for this purpose. It was found that the misorientation angle of boundary and stress anomalies arising from repeated dislocation absorption at the grain boundaries are the important parameters in determining the ability of the boundary to emit dislocations. Complex network of dislocations results in later stages of deformation, which may have a significant effect on the mechanical properties of the material. The peculiarities of dislocation nucleation, their emission from twist grain boundaries and the ramifications of this study towards development of higher length scale material models are discussed.
机译:晶界在概述晶体材料的机械性能方面起着重要作用。它们充当位错吸收/成核的位点,位错是塑性变形的主要载体。有鉴于此,利用嵌入原子法对面心立方Al进行了分子动力学模拟,探索了边缘位错与扭曲晶界-位错堆积,位错吸收和位错发射之间的相互作用。为此选择了具有不同取向角的<110>扭曲晶粒边界。结果表明,晶界重复吸收位错引起的边界失配角和应力异常是决定边界发射位错能力的重要参数。位错的复杂网络导致变形的后期,这可能会对材料的机械性能产生重大影响。讨论了位错形核的特殊性,它们从扭曲晶界处的发射以及本研究对开发更大尺寸的材料模型的影响。

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