平面变形下软弹性固体中谐波孔的修正解法

Junfeng Lu, Yu-Hao Zhang, Pengyu Pei, Ming Dai
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摘要

我们考虑一个嵌入平面变形弹性固体中的孔。固体承受均匀的远场载荷,而孔的边界则承受均匀的压力。我们重新审视了谐波孔的设计,使整个固体的平均应力保持不变。如果孔周围的变形相对较大,我们在确定孔的谐波形状时还会考虑孔内压力方向的变化。我们的研究表明,孔的谐波形状仍为椭圆形,但其长宽比与经典解法预测的不同。我们通过几个数值示例讨论了当前修正的谐波形状与经典对应方案之间的差异,以及内部压力的方向变化如何影响软弹性固体中椭圆谐波孔的长宽比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Modified solution for a harmonic hole in a soft elastic solid under plane deformation

We consider a hole embedded in an elastic solid under plane deformation. The solid undergoes a uniform far-field loading while the boundary of the hole is subjected to a uniform pressure. We revisit the design of a harmonic hole such that the mean stress in the entire solid remains constant. We additionally incorporate the change in the direction of the pressure inside the hole in determining the harmonic shape of the hole in case the deformation around the hole is relatively large. We show that the harmonic shape of the hole remains elliptical but its aspect ratio is different from that predicted by the classical solution. We discuss via several numerical examples the differences between the current modified harmonic shape and the classical counterpart as well as how the directional change of the internal pressure influences the aspect ratio of the elliptical harmonic hole within a soft elastic solid.

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