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Computational Modelling of Spherical Cavity Behavior in Rubber-Like Solids

机译:橡胶状固体中球形腔行为的计算建模

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摘要

A characteristic rubber failure process, termed cavitation, has been observed and analysed by several authors. This paper deals with the stress concentration effect of a hypothetical void (cavity) that is assumed to be present in rubber-like solids. Commercial software based on finite element method and up-to-date Arruda-Boyce material model is used here for rubber material behaviour modelling, A detailed study of the effects of particular material parameters on the cavity behaviour under fer-field hydrostatic tension condition is presented. The results are compared to those, which can be obtained for the case of simple neo-hookean material model of rubber. In opposite to standard crystalline materials there is no general failure criterion applicable for elastomeric materials. This analysis is motivated by the endeavour to determine a general criterion describing the failure of elastomers as a consequence of static loading.
机译:已经观察到并分析了若干作者的特征橡胶破坏过程,称为空化。本文涉及假设的空隙(腔)的应力集中效应,其假设以橡胶状固体存在。这里使用基于有限元方法和最新的Aruda-Boyce材料模型的商业软件用于橡胶材料行为建模,提出了对FER场静压张力条件下的特定材料参数对腔行为的影响的详细研究。将结果与那些相比,可以获得橡胶简单新钩材料模型的情况。与标准结晶材料相反,没有适用于弹性体材料的一般性故障标准。这种分析是由努力确定描述弹性体由于静态载荷而失败的一般标准。

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