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A mixed finite element formulation for compressible finite hyperelasticity with two fibre family reinforcement

机译:具有两个纤维族增强的可压缩有限超弹性的混合有限元公式

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A mixed finite element formulation for compressible finite hyperelasticity, possibly with strongly deformation dependent stiffening fibre reinforcement, is developed and verified. Reinforcement by two, mechanically equivalent, in general oblique, fibre families is considered. In the provided numerical experiments, residual based error estimation is essential for a simple h-adaptive mesh refinement strategy. It is shown to be effective to resolve stress concentrations, also in combination with stress oscillations (checker boarding) in the presence of strong anisotropy especially when mixed element constructs with enriched polynomial order are used. The novel mixed generalised (Lagrangian) metric based formulation is illustrated using a simple but fully coupled material model. The ground substance is the common so-called compressible neo-Hooke model and the standard reinforcement part is augmented by second order anisotropic invariants. The theoretical formulation admits approaching the inextensible limit seamlessly, by-passing the use of a separate decoupled material model. The Hu-Washizu implementation used here relies on a certain extensibility for elimination of the auxiliary variables, approximated in L-2 at the element level. The condensation yields a purely H-1-based displacement formulation at the global level. (C) 2018 Elsevier B.V. All rights reserved.
机译:开发并验证了可压缩的有限超弹性的混合有限元公式,可能带有强烈依赖变形的增强纤维增强材料。可以考虑采用两个机械等效的(通常是斜的)纤维家族进行加固。在提供的数值实验中,基于残差的误差估计对于简单的h自适应网格细化策略至关重要。它被证明可有效地解决应力集中问题,并且在存在强烈各向异性的情况下还可以与应力振荡(棋盘格结合)相结合,尤其是在使用具有丰富多项式阶数的混合元素构造时。使用一个简单但完全耦合的材料模型说明了基于混合广义(拉格朗日)度量的新型公式。地面物质是常见的所谓可压缩新胡克模型,标准增强部分通过二阶各向异性不变量进行增强。理论表述允许绕过不可扩展的极限,而无需使用单独的去耦材料模型。这里使用的Hu-Washizu实现依赖于消除辅助变量的某种可扩展性,该辅助变量在元素级别的L-2中近似。在全球范围内,冷凝产生了纯粹基于H-1的驱替配方。 (C)2018 Elsevier B.V.保留所有权利。

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