Validation of a hyperelastic modelling approach for cellular rubber

A. Ricker, N. H. Krӧger, M. Ludwig, R. Landgraf, J. Ihlemann
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引用次数: 4

Abstract

Cellular rubbers are elastomeric materials containing pores which can undergo large volumetric deformations. This contribution presents an isotropic, hyperelastic material model for cellular rubbers based on the approach of Danielsson, Parks, & Boyce (2004). For model validation and parameter fitting, experimental characterization were carried out for a foamed elastomers based on a natural rubber compound. Moreover, a feasible procedure of parameter fitting avoiding lateral strain measurement is outlined and tested. Furthermore, a finite element model of the microstructure of the cellular rubber is reconstructed from a computer tomography scan.
多孔橡胶超弹性建模方法的验证
多孔橡胶是一种含有孔隙的弹性材料,它可以承受较大的体积变形。这一贡献提出了基于Danielsson, Parks, & Boyce(2004)方法的多孔橡胶各向同性超弹性材料模型。为了模型验证和参数拟合,对天然橡胶复合材料的发泡弹性体进行了实验表征。提出了一种可行的避免侧向应变测量的参数拟合方法,并进行了试验。此外,通过计算机断层扫描重建了多孔橡胶微观结构的有限元模型。
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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