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Size effect and atomistic deformation mechanisms of hierarchically nanotwinned fcc metals under nanoindentation

机译:纳米压痕下分层纳米孪晶FCC金属的尺寸效应和原子形变机理

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摘要

Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanisms of hierarchically nanotwinned Cu under nanoindentation. When the grain size (d) and the spacing of primary twins (λ 1) are fixed, the hardness is observed to increase with decreasing spacing of secondary twins (λ 2) until a critical λ 2, and then decrease with further decreasing λ 2. The size effect of λ 2 on the plastic area beneath the indenter is observed to be exactly opposite to the trend of the size effect on the hardness. There exist two plastic zones beneath the indenter: the severe plastic zone and the moderate plastic zone. In the severe plastic zone, high density of dislocation networks are observed and the deformation mechanisms are independent of λ 2. The deformation mechanisms in the moderate plastic zone are highly dependent on the λ 2, which is the origin of the size effect on the hardness. Below the critical λ 2, the deformation mechanisms are dominated by the softening mechanisms with decreasing λ 2: (i) detwinning of secondary twins and (ii) nucleation and propagation of partial dislocations with a small angle to the boundaries of secondary twins. Above the critical λ 2, the deformation mechanisms are dominated by the strengthening mechanisms with decreasing λ 2: partial dislocations are blocked by the boundaries of primary twins or secondary twins.
机译:已经进行了分子动力学模拟以研究在纳米压痕下分级纳米孪晶铜的原子变形机理。当晶粒尺寸(d)和一次孪晶的间距(λ1)固定时,观察到硬度随着二次孪晶的间距(λ2)的减小而增加,直到临界λ2,然后随着λ2的进一步减小而减小。观察到在压头下方的塑料区域上λ2的尺寸效应与硬度对尺寸效应的趋势完全相反。压头下面有两个塑性区:重度塑性区和中度塑性区。在严重的塑性区中,观察到高位错网络,并且变形机制与λ2无关。在中等塑性区中的变形机制高度依赖于λ2,这是尺寸对硬度的影响的起源。 。低于临界λ2时,变形机制以λ2减小的软化机制为主导:(i)次生孪晶的解缠和(ii)与次生孪晶的边界成小角度的部分位错的形核和传播。高于临界λ2时,变形机制以增强机制为主,而λ减小:2:部分位错被初级孪生或次级孪生的边界所阻挡。

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  • 来源
    《Journal of Materials Science》 |2015年第23期|7557-7567|共11页
  • 作者

    Fuping Yuan; Xiaolei Wu;

  • 作者单位

    State Key Laboratory of Nonlinear Mechanics Institute of Mechanics Chinese Academy of Science">(1);

    State Key Laboratory of Nonlinear Mechanics Institute of Mechanics Chinese Academy of Science">(1);

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  • 正文语种 eng
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