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Equilibrium swelling of core-shell composite microgels

机译:核-壳复合微凝胶的平衡溶胀

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摘要

A model is developed in finite elasticity of microgels subjected to swelling. Constitutive equations are derived by means of the free energy imbalance relation for an arbitrary three-dimensional deformation with finite strains. The governing equations are applied to the analysis of equilibrium swelling of a core-shell microgel particle with a rigid core and a soft shell. The stress-strain relations involve six material constants whose effect on polymer density profile and distribution of stresses is analyzed numerically. In accord with observations, the model predicts that volume fraction of the polymer network decreases sharply near the core-shell interface, becomes practically constant in the central part of the shell, and decays to zero near the outer surface of a spherical particle.
机译:建立了溶胀的微凝胶的有限弹性的模型。借助于自由能量不平衡关系,可以导出具有有限应变的任意三维变形的本构方程。该控制方程用于分析具有刚性核和软壳的核-壳微凝胶颗粒的平衡溶胀。应力-应变关系涉及六个材料常数,这些常数对聚合物密度分布和应力分布的影响进行了数值分析。与观察结果一致,该模型预测聚合物网络的体积分数在核-壳界面附近急剧下降,在壳的中心部分实际上变得恒定,并且在球形颗粒的外表面附近衰减为零。

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