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Surface effect on deformation around an elliptical hole by surface energy density theory

机译:表面能密度理论对椭圆孔周围变形的表面影响

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摘要

The finite plane deformation of nanomaterial surrounding an elliptical hole subjected to remote loading is systematically investigated using a recently developed continuum theory. A complex variable formulation is utilized to obtain a closed-form solution for the hoop stress along the edge of the hole. The results show that when the size of the hole reduces to the same order as the ratio of the surface energy density to the applied remote stress, the influence of the surface energy density plays an even more significant role, and the shape of the hole coupled with surface energy density has a significant effect on the elastic state around the hole. Surprisingly, in the absence of any external loading, the hoop stress induced solely by surface effects is identical to that for a hole with surface energy in a linearly elastic solid derived by the Gurtin-Murdoch surface elasticity model. The results in this paper should be useful for the precise design of nanodevices and helpful for the reasonable assessment of test results of nano-instruments.
机译:系统地研究了最近开发的连续素理论,系统地研究了经受远程负荷的椭圆孔的纳米材料的有限平面变形。利用复杂的可变制剂来获得沿孔的边缘的箍应力的闭合溶液。结果表明,当空穴的尺寸减小到与所施加的遥控器的表面能密度与表面能密度的比率相同时,表面能量密度的影响起着更大的作用,并且孔的形状耦合表面能密度对孔周围的弹性状态具有显着影响。令人惊讶的是,在没有任何外部负荷的情况下,仅通过表面效果诱导的箍应力与具有由古霉菌 - 默多普表面弹性模型的线性弹性固体中具有表面能的孔的箍应力相同。本文的结果应对纳米型设计的精确设计有助于合理评估纳米仪器的测试结果。

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