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Shock-induced breaking in the gold nanowire with the influence of defects and strain rates

机译:触觉打破在金纳米线缺陷和应变率的影响

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Defects in metallic nanowires have raised concerns about the applied reliability of the nanowires in nanoelectromechanical systems. In this paper, molecular dynamics simulations are used to study the deformation and breaking failure of the [100] single-crystal gold nanowires containing defects at different strain rates. The statistical breaking position distributions of the nanowires show mechanical shocks play a critical role in the deformation of nanowires at different strain rates, and deformation mechanism of the nanowire containing defects is based on a competition between shocks and defects in the deformation process of the nanowire. At low strain rate of 1.0% ps~(-1), defect ratio of 2% has changed the deformation mechanism because micro-atomic fluctuation is in an equilibrium state. However, owing to strong symmetric shocks, the sensitivity of defects is not obvious before a defect ratio of 25% at high strain rate of 5.0% ps~(-1).
机译:金属纳米线缺陷提出了担忧纳米线的应用可靠性nanoelectromechanical系统。使用分子动力学模拟研究的变形和破坏失败[100]含缺陷单晶金纳米线在不同的应变率。纳米线的位置分布显示机械冲击中发挥关键作用纳米线在不同应变的变形率和变形机制的纳米线含缺陷是基于竞争冲击和缺陷之间的变形纳米线的过程。1.0% p ~(1),缺陷比率的2%已经改变了因为micro-atomic变形机制波动处于一个平衡状态。由于对称冲击强、灵敏度之前的缺陷不明显缺陷比率25%的高应变率5.0%的p ~(1)。

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