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Geometrically non-linear analysis of arbitrary elastic supported plates and shells using an element-based Lagrangian shell element

机译:使用基于单元的拉格朗日壳单元对任意弹性支撑板和壳进行几何非线性分析

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摘要

In the present paper, the ELF (element-based Lagrangian formulation) 9-node ANS (assumed natural strain) shell element was combined with the spring element for geometrically non-linear analysis of plates and shells sustained by arbitrary elastic edge supports that are subjected to variation in loading. This particular spring element serves as tool for modeling an arbitrary elastic edge support with 6 DOF (degrees of freedom). The elastic edge support was modeled by combining different spring models. The ANS method was used to overcome shear and membrane locking problems inherent in some thin plate and shell problems. In the formulation of the ELF characteristic arrays, the expression of element strains was adopted in the framework of the element natural coordinates. The non-linear analysis results of idealized edge supports were validated against the reference solutions available in the literature. As a result of the numerical test, the combination of the ELF 9-node shell element and spring element shows an exceptional performance for non-linear analysis of plates and shells under elastic edge supports.
机译:在本文中,将ELF(基于元素的拉格朗日公式)9节点ANS(假定的自然应变)壳单元与弹簧单元相结合,以对由任意弹性边缘支撑承受的板和壳进行几何非线性分析改变负载。这个特定的弹簧元件用作对具有6 DOF(自由度)的任意弹性边缘支撑进行建模的工具。弹性边缘支撑通过组合不同的弹簧模型来建模。 ANS方法用于克服某些薄板和壳体问题中固有的剪切和膜锁定问题。在ELF特征数组的表述中,在单元自然坐标的框架内采用单元应变的表达。相对于文献中提供的参考解决方案,对理想化边缘支撑的非线性分析结果进行了验证。数值测试的结果是,ELF 9节点壳单元和弹簧单元的组合对于弹性边缘支撑下的板和壳的非线性分析显示出卓越的性能。

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