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首页> 外文期刊>International Journal of Solids and Structures >Constitutive modeling of strain-induced softening in swollen elastomers
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Constitutive modeling of strain-induced softening in swollen elastomers

机译:溶胀弹性体中应变诱发软化的本构模型

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摘要

Under cyclic loading, elastomeric material exhibits strong inelastic responses such as stress-softening due to Mullins effect, hysteresis and permanent set. The corresponding inelastic responses are observed in both dry and swollen rubbers. Moreover, it is observed that inelastic responses depend strongly on the swelling level. For engineering applications involving the interaction and contact between rubber components and solvent, the understanding and consideration of swelling are essential pre-requisites for durability analysis. In this paper, a simple phenomenological model describing Mullins effect in swollen rubbers under cyclic loading is proposed. More precisely, the proposed model adopts the concept of evolution of soft domain microstructure with deformation originally proposed by Mullins and Tobin. The swollen rubbers are obtained by immersing dry ones in solvent until desired degrees of swelling are achieved. Subsequently, their mechanical responses, in particular Mullins effect, under cyclic loading are investigated. These experimental data are used to assess the efficiency of the proposed model. Results show that the model agrees qualitatively well with experiments. Furthermore, the model captures well the fundamental features of strain-induced softening.
机译:在循环载荷下,弹性材料表现出很强的非弹性响应,例如由于穆林斯效应,滞后和永久变形而引起的应力软化。在干燥和膨胀的橡胶中都观察到了相应的无弹性响应。而且,观察到非弹性响应在很大程度上取决于膨胀水平。对于涉及橡胶组分和溶剂之间相互作用和接触的工程应用,对溶胀的理解和考虑是耐久性分析的必要前提。本文提出了一个简单的现象模型,描述了循环荷载作用下橡胶在溶胀橡胶中的穆林斯效应。更准确地说,所提出的模型采用了由Mullins和Tobin最初提出的具有变形的软域微观结构演化的概念。溶胀的橡胶是通过将干燥的橡胶浸入溶剂中直至达到所需的溶胀度而获得的。随后,研究了它们在循环载荷下的机械响应,特别是穆林斯效应。这些实验数据用于评估所提出模型的效率。结果表明该模型与实验定性吻合。此外,该模型很好地捕捉了应变引起的软化的基本特征。

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