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Modeling the stress-strain behavior of rubber

机译:模拟橡胶的应力应变行为

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This review focuses on models for rubber that have been used to solve practical problems, either analytically or through the use of finite element analysis (FEA). The emphasis is on the mathematical structure of fully three dimensional models and the scope of behavior that they describe. The mechanisms that are responsible for the behavior are referred to in passing, and prominence is given to models with firm mechanistic foundations. The review starts with definitions of stress and of measures of deformation, and shows how even the simplest model, classical elasticity theory with appropriate values of shear and bulk moduli, gives useful analytical expressions for many products. Viscoelasticity and hyperelasticity are briefly discussed, as well as the more recently introduced models for inelastic effects, notably the Mullins and Payne (or Fletcher-Gent) effects. Some phenomena not yet addressed by models implemented in commercial FEA packages, such as set, cyclic creep and cyclic stress relaxation, are mentioned, and indications of emerging approaches to modeling them are given.
机译:这篇评论的重点是已经用于解决实际问题的橡胶模型,无论是通过分析还是通过使用有限元分析(FEA)来解决。重点是完全三维模型的数学结构及其描述的行为范围。顺带提及了负责该行为的机制,并突出了具有牢固机制基础的模型。这篇综述从应力和变形量的定义开始,并展示了即使是最简单的模型,具有适当剪切力和体积模量值的经典弹性理论,也可以为许多产品提供有用的分析表达式。简要讨论了粘弹性和超弹性,以及最近引入的非弹性效应模型,特别是Mullins和Payne(或Fletcher-Gent)效应。提到了商业FEA软件包中尚未实现的模型解决的一些现象,例如变形,循环蠕变和循环应力松弛,并给出了新兴的建模方法的迹象。

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