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DERIVATION OF A NEW MODEL INCLUDING THE EFFECT OF SWELLING ON FINITE STRAIN PROPERTIES FOR POLYMERIC GELS

机译:推导包括溶胀对聚合物凝胶有限应变性能的影响的新模型

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Polymeric gels consist in a cross-linked polymer chains network which contains a large quantity of solvent molecules. The main property of gels is their ability to absorb solvent molecules without being dissolved, and to shrink when they release fluid. This swelling/deswelling phenomenon involves large volume changes of the gel, when the solvent diffuses into the large strain elastic solid. In recent literature, constitutive equations, in which the gel is considered as a single continuum body, have been derived to describe such a coupled deformation/diffusion problem. However, these works are based on the simple mono-dimensional models of both Flory and Treloar devoted to rubber swelling. The aim of the present work is the derivation of a new constitutive equation based on an original definition of the elastic strain energy. The differences with the classical theory are highlighted on two simple examples.
机译:聚合物凝胶由包含大量溶剂分子的交联聚合物链网络组成。凝胶的主要特性是它们吸收溶剂分子而不溶解的能力,并在释放流体时收缩。当溶剂扩散到大应变弹性固体中时,这种溶胀/溶胀现象涉及凝胶的大量体积变化。在最近的文献中,已经提出了将凝胶视为单个连续体的本构方程来描述这种耦合的变形/扩散问题。但是,这些作品是基于Flory和Treloar致力于橡胶溶胀的简单一维模型建立的。本工作的目的是在弹性应变能的原始定义的基础上推导新的本构方程。在两个简单的例子中突出了与经典理论的差异。

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