Kaliske M, Storm J, Kanan A, Klausler W
Institute for Structural Analysis, Technische Universität Dresden, Dresden, Germany.
Philos Trans A Math Phys Eng Sci. 2022 Oct 17;380(2234):20210329. doi: 10.1098/rsta.2021.0329. Epub 2022 Aug 29.
Hyperelastic constitutive relations form the basis of advanced models for novel materials. Such elastic deformation potentials are the backbone for complex material formulations at elastic and inelastic deformations, especially when embedded into powerful frameworks like generalized standard materials, as well as multiphysical and multiscale formulations. With the focus on electroactive polymers, the article at hand demonstrates the derivation of a variational, rate-dependent electromechanical model for quasi-incompressible polymers and the derivation of an electromechanical model for regularized fracture mechanics by means of the phase-field method. Starting at the prominent Ogden and the extended tube model, some developments from the last decades are revisited and presented via the principle of virtual power, for instance, the established mixed element formulation, nonlinear viscoelasticity and electromechanical coupling. An electromechanically fully coupled representative crack element is used to derive a novel phase-field model for fracture. A key property of the proposed model is the ability to describe the electrical free-space behaviour inside the crack gap, which is demonstrated by adopting three common crack-face conditions. This article is part of the theme issue 'The Ogden model of rubber mechanics: Fifty years of impact on nonlinear elasticity'.
超弹性本构关系构成了新型材料先进模型的基础。这种弹性变形势是弹性和非弹性变形复杂材料配方的支柱,特别是当嵌入到广义标准材料等强大框架以及多物理场和多尺度配方中时。本文聚焦于电活性聚合物,展示了一种用于准不可压缩聚合物的变分、速率相关机电模型的推导,以及通过相场方法推导正则化断裂力学的机电模型。从著名的奥格登模型和扩展管模型出发,回顾了过去几十年的一些发展,并通过虚功率原理进行了介绍,例如已确立的混合单元公式、非线性粘弹性和机电耦合。使用一个机电完全耦合的代表性裂纹单元来推导一种新的断裂相场模型。所提出模型的一个关键特性是能够描述裂纹间隙内的电自由空间行为,这通过采用三种常见的裂纹面条件得到了证明。本文是主题特刊“橡胶力学的奥格登模型:对非线性弹性影响的五十年”的一部分。