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Development of triangular flat-shell element using a new thin-thick plate bending element based on semiLoof constrains

机译:基于SemiLoof约束的新型薄板弯曲元件开发三角形扁平壳元件

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A new simple 3-node triangular flat-shell element with standard nodal DOF (6 DOF per node) is proposed for the linear and geometrically nonlinear analysis of very thin to thick plate and shell structures. The formulation of element GT9 (Long and Xu 1994), a generalized conforming membrane element with rigid rotational freedoms, is employed as the membrane component of the new shell element. Both one-point reduced integration scheme and a corresponding stabilization matrix are adopted for avoiding membrane locking and hourglass phenomenon. The bending component of the new element comes from a new generalized conforming Kirchhoff-Mindlin plate element TSL-T9, which is derived in this paper based on semiLoof constrains and rational shear interpolation. Thus the convergence can be guaranteed and no shear locking will happen. Furthermore, a simple hybrid procedure is suggested to improve the stress solutions, and the Updated Lagrangian formulae are also established for the geometrically nonlinear problems. Numerical results with solutions, which are solved by some other recent element models and the models in the commercial finite element software ABAQUS, are presented. They show that the proposed element, denoted as GMST18, exhibits excellent and better performance for the analysis of thin-think plates and shells in both linear and geometrically nonlinear problems.
机译:提出了一种新的具有标准节点自由度(每个节点6个自由度)的简单3节点三角扁平壳单元,用于从薄到厚的板壳结构的线性和几何非线性分析。 GT9单元(Long和Xu 1994)是一种具有刚性旋转自由度的广义贴合膜单元,其配方被用作新壳单元的膜组件。为了避免膜锁定和沙漏现象,均采用了单点简化积分方案和相应的稳定矩阵。新元素的弯曲分量来自新的广义一致的Kirchhoff-Mindlin板单元TSL-T9,本文是基于SemiLoof约束和有理剪力插值得出的。因此,可以保证收敛并且不会发生剪切锁定。此外,提出了一种简单的混合程序来改善应力解,并针对几何非线性问题建立了更新的拉格朗日公式。提出了带有解的数值结果,这些结果可以通过其他一些最新的元素模型以及商用有限元软件ABAQUS中的模型进行求解。他们表明,所提出的元素(表示为GMST18)在分析线性和几何非线性问题中的薄板和薄壳时表现出优异和更好的性能。

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