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Variational formulation of micropolar elasticity using 3D hexahedral finite-element interpolation with incompatible modes

机译:使用不兼容模式的3D六面体有限元插值法微极性弹性的变化公式

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摘要

A three-dimensional micropolar elasticity is cast in terms of the rigorous variational formulation. The discrete approximation is based on hexahedral finite element using the conventional Lagrange interpolation and enhanced with incompatible modes. The proposed element convergence is checked by performing patch tests which are derived specifically for micropolar finite elements. The element enhanced performance is also demonstrated by modelling two boundary value problems with analytical solutions, both exhibiting the size-effect. The analyzed problems involve a cylindrical plate bending and pure torsion of circular cylinders, which were previously used in the experimental determination of the micropolar material parameters. The numerical results are compared against the analytical solution, and additionally against existing experiments on a polymeric foam for the pure torsion problem. The enhancement due to incompatible modes provides the needed improvement of the element performance in the bending test without negative effects in the pure-torsion test where incompatible modes are not needed. It is concluded that the proposed element is highly suitable for the numerical validation of the experimental procedure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:三维微极性弹性是按照严格的变化公式来表达的。离散逼近基于六面体有限元,使用常规拉格朗日插值法,并采用不兼容模式进行了增强。建议的元素收敛性通过执行补丁测试进行检查,补丁测试专门针对微极性有限元素而得出。通过使用解析解决方案对两个边界值问题进行建模,也证明了元素增强的性能,这两个问题均表现出尺寸效应。分析的问题涉及圆柱板弯曲和圆柱体的纯扭力,这些问题以前曾用于微极性材料参数的实验确定。将数值结果与分析解决方案进行了比较,此外还与针对纯扭转问题的聚合物泡沫的现有实验进行了比较。由不兼容模式引起的增强可提供弯曲测试中所需的元素性能改进,而在不需要不兼容模式的纯扭转测试中不会产生负面影响。结论是,提出的元件非常适合于实验程序的数值验证。 (C)2018 Elsevier Ltd.保留所有权利。

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