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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >A thermo-mechanically coupled theory for fluid permeation in elastomeric materials: Application to thermally responsive gels
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A thermo-mechanically coupled theory for fluid permeation in elastomeric materials: Application to thermally responsive gels

机译:弹性体材料中流体渗透的热机械耦合理论:在热响应性凝胶中的应用

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摘要

An elastomeric gel is a cross-linked polymer network swollen with a solvent, and certain gels can undergo large reversible volume changes as they are cycled about a critical temperature. We have developed a continuum-level theory to describe the coupled mechanical deformation, fluid permeation, and heat transfer of such thermally responsive gels. In discussing special constitutive equations we limit our attention to isotropic materials, and consider a model based on a Flory-Huggins model for the free energy change due to mixing of the fluid with the polymer network, coupled with a non-Gaussian statistical-mechanical model for the change in configurational entropy-a model which accounts for the limited extensibility of polymer chains. We have numerically implemented our theory in a finite element program. We show that our theory is capable of simulating swelling, squeezing of fluid by applied mechanical forces, and thermally responsive swelling/de-swelling of such materials.
机译:弹性体凝胶是被溶剂溶胀的交联聚合物网络,某些凝胶在临界温度下循环时会发生较大的可逆体积变化。我们已经开发出一种连续水平理论来描述这种热响应性凝胶的耦合机械变形,流体渗透和传热。在讨论特殊的本构方程时,我们将注意力集中在各向同性材料上,并考虑基于Flory-Huggins模型的模型,用于流体与聚合物网络混合引起的自由能变化,以及非高斯统计力学模型。构型熵的变化-一种解释聚合物链可扩展性有限的模型。我们已经在有限元程序中以数字方式实现了我们的理论。我们证明了我们的理论能够模拟溶胀,通过施加的机械力对流体的挤压以及此类材料的热响应溶胀/消溶胀。

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