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Influence of loading directions on dislocation slip mechanism of nanotwinned Ni with void defect at the twin boundary

机译:加载方向对纳米丝Ni脱位滑移机理对双边界空隙缺陷的影响

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In this study, a molecular dynamics model is used to simulate the compressive loading process along different crystal orientations of nano-twinned Ni with void defect at the twin boundaries. The loading angle is defined as the angle between the loading direction and the twin boundary, loading angles of 0, 15, 30, 45, 60, 75, and 90 degrees were investigated in this study. The effects of different loading directions on the mechanical properties and the dislocation glide mechanisms were investigated. The dislocation glide process during the initial stage of plastic deformation for different loading directions was also studied. The results show that the dislocation glide mainly occurs along the {1 1 1} plane that is inclined to the twin boundaries when the loading direction is 0 degrees. The dislocation glide process is constrained by the twin boundaries and, therefore, slips along the twin layers. As the loading angle increases from 0 degrees to 45 degrees, the dislocation gradually shifts and slips along the (1 1 1) slip plane that is parallel to the twin boundaries and twin migration and twinning occur. As the loading angle continues to increase to 90 degrees, the dislocation slips along the {1 1 1} plane again during the loading process. In addition, the dislocation slips toward the adjacent twin layers because they are strongly hindered by the twin boundaries.
机译:在该研究中,分子动力学模型用于模拟沿着双界面的纳米孪晶Ni的不同晶体取向的压缩加载过程,在双界处具有空隙缺陷。在该研究中研究了装载方向和双边界之间的加载角度,加载角度,0,15,30,45,60,75和90度之间的角度。研究了研究不同加载方向对机械性能和脱位滑翔机构的影响。还研究了不同装载方向的塑性变形初始阶段的位错滑动过程。结果表明,当装载方向为0度时,沿{111 1}平面主要发生沿{111 1}平面。位错滑动过程受到双界限的约束,因此沿双层滑动。随着加载角从0度增加到45度,脱位逐渐偏移并沿着(111)滑动平面,该滑移平面平行于双界限,并且发生双迁移和孪晶。随着装载角继续增加到90度,在装载过程中再次沿{1111}平面滑动。另外,位错朝向相邻的双层,因为它们被双界强烈阻碍。

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