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Atomistic Investigation of Anisotropic Nanoindentation Behavior of Nanotwinned Aluminum Containing Inclined Twin Boundaries

机译:纳米孪晶含倾斜孪晶边界的各向异性纳米压痕行为的原子学研究

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摘要

Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin boundary interactions. In the present work, we elucidate the microscopic deformation mechanisms and their correlations with the macroscopic mechanical response of nanotwinned Al containing inclined twin boundaries under nanoindentation by means of molecular dynamics simulations. The effect of twin boundary orientation with respect to the indented surface on the nanoindentation is evaluated. Simulation results reveal that dislocation slip, dislocation–twin boundary interaction, and twin boundary migration operate in parallel in the plastic deformation of nanotwinned Al. The inclination angle of twin boundaries with respect to indented surface has a strong influence on the interaction between individual deformation modes, which in turn leads to the anisotropic indentation behavior of nanotwinned Al.
机译:纳米孪晶金属由于独特的位错-孪晶边界相互作用而具有优越的机械性能。在目前的工作中,我们通过分子动力学模拟阐明了微观压痕机理及其与纳米压痕下含孪晶斜界的纳米孪晶铝的宏观力学响应的关系。评估相对于压痕表面的孪晶边界取向对纳米压痕的影响。模拟结果表明,位错滑移,位错-孪晶边界相互作用和孪晶边界迁移在纳米孪晶Al的塑性变形中并行进行。孪晶边界相对于压痕表面的倾斜角度对各个变形模式之间的相互作用有很大的影响,进而导致纳米孪晶铝的各向异性压痕行为。

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