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Twin-size effects on the hardness and plastic deformation mechanisms of nanotwinned diamond

机译:对纳米丝钻石硬度和塑性变形机制的双尺寸影响

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摘要

Although the recently synthesized nanotwinned diamond was found with Vickers hardness exceeding 200 GPa, almost twice the commonly quoted hardness of single crystal diamond, there are still some controversies about the twin-size effects on its hardness and the related plastic deformation mechanisms under Vickers indentations. Through molecular dynamics simulations, we have investigated the behaviors of nanotwinned diamond models under Vickers indentations. Our results indicate that the hardness of nanotwinned diamond would increase with the decreasing of twin boundary separations, but the increasing rate would be reduced due to the concentrated twin boundaries. A formula was given to depict the relationship between hardness and twin thickness, and was consistence with the simulation results. We found that the hardness of nanotwinned diamond is mainly resulted from the competition between strengthening and softening effects of twin boundaries, and the related mechanisms are qualitatively discussed. This work not only provide an answer for the questions about the hardness of nanotwinned diamond versus twin boundary separations, but also offer insights into the plasticity of nanotwinned diamond, which could be beneficial to the design of novel nano structured ultrahard materials and evaluate their origins of hardness and strength.
机译:虽然最近合成的纳米型钻石被发现超过200GPa的维氏硬度,但几乎是单晶钻石的常用硬度的两倍,仍然有一些关于其硬度和维氏缩进的硬度和相关塑性变形机制的争议。通过分子动力学模拟,我们研究了维克斯缩进下的纳米线钻石模型的行为。我们的结果表明,纳米线的金刚石的硬度随着双边界分离的降低而增加,但由于浓缩的双界,增加的速率将减少。发出公式描述硬度和双厚度之间的关系,并与模拟结果一致。我们发现,纳米线钻石的硬度主要是由于对双界的强化和软化效果之间的竞争,并且有相关机制被讨论。这项工作不仅提供了关于纳米型钻石硬度与双边界分离的问题的答案,而且还提供了纳米丝钻石的可塑性的见解,这可能有利于新的纳米结构化超级材料的设计,并评估它们的起源硬度和力量。

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