On Modelling Simple Shear for Isotropic Incompressible Rubber-Like Materials

被引:0
|
作者
Afshin Anssari-Benam
Cornelius O. Horgan
机构
[1] University of Portsmouth,Cardiovascular Engineering Research Lab (CERL), School of Mechanical and Design Engineering
[2] University of Virginia,School of Engineering and Applied Science
来源
Journal of Elasticity | 2021年 / 147卷
关键词
Simple shear; Constitutive modelling; Generalised neo-Hookean model; Limiting chain extensibility; Fitting with experimental data; 74B20 74G55;
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中图分类号
学科分类号
摘要
In this paper we demonstrate the application of a recently proposed molecular based generalised neo-Hookean strain energy function within the family of limiting chain extensibility models to the simple shear of incompressible isotropic rubber-like hyperelastic materials. The two-parameter model of concern is capable of capturing both linear and highly nonlinear shear stress responses. It provides favourable simultaneous fits to experimental data for various components of the simple shear stress field, such as the shear stress and normal tractions/stresses, with a single set of parameter values. In addition, when used in a phenomenological context, the model also captures shear-softening behaviour and predicts an interesting instability. These modelling results are demonstrated in conjunction with a wide range of extant experimental data involving the simple shearing of biological tissue specimens and polymer and rubber samples. It will also be shown that in all these applications, the proposed model remains stable (convex) over the defined domain of deformation. These results underline the merits of the considered model for addressing some of the outstanding challenges in the constitutive modelling of the complex nonlinear behaviour of rubber-like materials.
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页码:83 / 111
页数:28
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