受压平面超弹性膜力学。

A P S Selvadurai
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引用次数: 5

摘要

本文研究了不可压缩平面超弹性膜的膨胀力学,这些膜在其边界处刚性固定并受到均匀压力。采用了以新hookean、Mooney-Rivlin和Ogden形式为特征的应变能函数。沿圆形或椭圆边界提供固定性。计算结果表明,应变能函数对变形膜的压力-膨胀体积响应有显著影响。当应变能函数对应于Mooney-Rivlin形式时,圆膜没有表现出任何不稳定的趋势。由新hookean型和ogden型应变能函数组成的等效圆膜产生了初始的“起皱不稳定性”。对于椭圆平面膜,起皱不稳定性更为明显;具有Mooney-Rivlin形式应变能函数的超弹性材料组成的膜在没有初始不稳定性点的情况下继续变形,而由neo-Hookean和Ogden材料组成的膜在固定边界区域内部的关键位置表现出起皱行为。应变能函数对柯西-格林应变张量第二不变量的依赖关系影响了超弹性效应的抑制。本文是专题“橡胶力学的奥格登模型:五十年来对非线性弹性的影响”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanics of pressurized planar hyperelastic membranes.

The paper examines the mechanics of inflation of incompressible planar hyperelastic membranes that are rigidly fixed at their boundary and subjected to a uniform pressure. Strain energy functions characterized by the neo-Hookean, Mooney-Rivlin and the Ogden forms are used. Fixity is provided along either circular or elliptical boundaries. The computational results indicate that the strain energy function has a significant influence on the pressure versus inflated volume response of the deformed membrane. When the strain energy function corresponds to a Mooney-Rivlin form, the circular membrane displays no tendency to develop any instability. The equivalent circular membranes composed of both the neo-Hookean and Ogden-type strain energy functions developed an initial 'Wrinkling Instability'. For planar membranes with an elliptical planform, the wrinkling instability is more pronounced; membranes composed of hyperelastic materials with a Mooney-Rivlin form of the strain energy function continue to deform without the development of an initial instability point, whereas membranes composed of both the neo-Hookean and Ogden materials exhibit wrinkling behaviour at critical locations at the interior of the fixed boundary region. The dependency of the strain energy function on the second invariant of the Cauchy-Green strain tensor has an influence in the suppression of hyperelastic effects. This article is part of the theme issue 'The Ogden model of rubber mechanics: Fifty years of impact on nonlinear elasticity'.

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