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Energetics of dislocation nucleation under a nanoindenter

机译:纳米压头下位错成核的能量学

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We present an analysis of dislocation nucleation under an idealized nanoindenter based on the variational boundary integral formulation of the Peierls-Nabarro dislocation model. By solving the embryonic dislocation profiles, corresponding to the relative displacements between the two adjacent atomic layers along the slip plane, we have determined the critical conditions for athermal dislocation nucleation as well as the activation energies required to thermally activate embryonic dislocations from their stable to unstable saddle point configurations. The effect of the size of the indenter on the energetics of dislocation nucleation is quantitatively characterized. The result is compared with a simplified analysis based on the application of the Rice model for dislocation nucleation at a crack tip.
机译:我们提出了基于Peierls-Nabarro位错模型的变分边界积分公式,在理想的纳米压头下进行的位错成核分析。通过求解对应于两个相邻原子层沿滑移面的相对位移的胚胎位错分布,我们确定了非热位错成核的临界条件以及热激活胚胎位错从稳定到不稳定的活化能。鞍点配置。压痕大小对位错形核能的影响是定量表征的。将结果与基于Rice模型在裂纹尖端处的位错成核的应用的简化分析进行比较。

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