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首页> 外文期刊>International journal of non-linear mechanics >Finite amplitude elastic waves due to non-uniform traction at the surface of a cylindrical cavity
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Finite amplitude elastic waves due to non-uniform traction at the surface of a cylindrical cavity

机译:由于圆柱腔表面的不均匀牵引而产生的有限振幅弹性波

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This paper is concerned with two spatial dimension, finite amplitude wave propagation emanating from the surface of an initially circular cylindrical cavity in an unbounded isotropic compressible isotropic hyperelastic solid. The solid is initially in the natural reference configuration and the wave propagation is due to an azimuthally non-uniform, sudden application of compressive nominal traction at the surface of the cavity. Governing equations for the problem are obtained in Lagrangian form in terms of cylindrical polar coordinates and two different classes of strain energy functions are considered. Numerical solutions, for a particular application of traction, are obtained from a fully explicit finite difference scheme. It was found that the responses to the particular application of traction differed negligibly for the various strain energy functions considered.
机译:本文涉及两个空间维度,即在无界各向同性可压缩各向同性超弹性固体中从初始圆柱腔表面发出的有限振幅波传播。固体最初处于自然参考配置,并且波传播是由于在腔体表面突然突然施加了压缩标称牵引力造成的,但方位角不均匀。根据圆柱极坐标,以拉格朗日形式获得了该问题的控制方程,并考虑了两种不同的应变能函数。对于牵引力的特定应用,数值解是从完全明确的有限差分方案中获得的。发现对于所考虑的各种应变能函数,对牵引的特定应用的响应可以忽略不计。

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