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Large-strain poroelastic plate theory for polymer gels with applications to swelling-induced morphing of composite plates

机译:高分子凝胶大应变多孔板理论及其在复合板溶胀诱导变形中的应用

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摘要

We derive a large-strain plate model that allows to describe transient, coupled processes involving elasticity and solvent migration, by performing a dimensional reduction of a three-dimensional poroelastic theory. We apply the model to polymer gel plates, for which a specific kinematic constraint and constitutive relations hold. Finally, we assess the accuracy of the plate model with respect to the parent three-dimensional model through two numerical benchmarks, solved by means of the finite element method. Our results show that the theory offers an efficient computational framework for the study of swelling-induced morphing of composite gel plates.
机译:我们导出一个大应变板模型,该模型可以通过执行三维多孔弹性理论的降维来描述涉及弹性和溶剂迁移的瞬态耦合过程。我们将该模型应用于具有特定运动学约束和本构关系的聚合物凝胶板。最后,我们通过两个数值基准评估了板模型相对于父级三维模型的准确性,并通过有限元方法进行了求解。我们的结果表明,该理论为研究复合凝胶板的溶胀诱导变形提供了有效的计算框架。

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