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The roles of crystallographic orientation, high-angle grain boundary, and indenter diameter during nano-indentation

机译:纳米压痕过程中晶体取向,高角度晶界和压头直径的作用

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摘要

Molecular dynamics simulation of nano-indentation of single-crystal and bicrystal FCC aluminum is performed. The role of crystallographic orientation during nano-indentation of single-crystal aluminum is assessed. Then, the influence of the presence of a grain boundary is analyzed by adding high-angle symmetric tilt boundaries of I 5 pound < 210 >/(100) and I 5 pound < 310 >/(100) parallel to the surface on which the indentation is performed. Furthermore, in both cases, the size of the indenter is changed to investigate how the surface curvature of the indenter affects the nano-indentation process. The results suggest that in each crystallographic orientation, the presence of a grain boundary increases the required force for indentation, while the distance of a grain boundary from the indentation surface could affect the increase in the required force. Simulations prove that the grain boundary acts as a source of generation and emission of dislocations and restricts the penetration of the indenter by limiting the slip band formation and plastic deformation. The dislocation emission from the grain boundary restricts the penetration of the indenter and limits the formation of the octahedral slip systems of type {111}< 110 > and consequently increases the required force for indentation in bicrystals.
机译:进行了单晶和双晶FCC铝纳米压痕的分子动力学模拟。评估晶体学取向在单晶铝纳米压痕中的作用。然后,通过添加平行于其表面的I 5磅<210> /(100)和I 5磅<310> /(100)的高角度对称倾斜边界来分析晶界的存在的影响。缩进。此外,在两种情况下,都改变压头的尺寸以研究压头的表面曲率如何影响纳米压痕过程。结果表明,在每个晶体学取向中,晶界的存在增加了压痕所需的力,而晶界距压痕表面的距离可能影响所需力的增加。仿真证明,晶界是位错产生和发射的来源,并通过限制滑移带的形成和塑性变形来限制压头的穿透。来自晶界的位错发射限制了压头的穿透并限制了{111} <110>型八面体滑移系统的形成,因此增加了双晶中压痕所需的力。

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