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Adaptive finite element buckling analysis of folded plate structures

机译:折叠板结构的自适应有限元屈曲分析

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The finite element linear buckling analysis of folded plate structures using adaptive h-refinement methods is presented in this paper. The variable-node flat shell element used in this study(CLS,Choi and Lee 1995) possesses the drilling D.O.F.which,in addition to improvement of the element behavior, permits an easy connection to other elements with six degrees of freedom per node.Accordingly,the folded plate structures,for which it is hard to find the analytical solutions,can be analyzed using these developed flat shell elements.By introducing the variable-node elements which have physicla mid-side nodes,some difficulties associated with connecting the differentlayer patterns,which is common in the adaptive h-refinement on quadrilateral mesh,can be overcome.To obtain the better stress field for the error estimation,the super-convergent patch recovery is used.The convergent buckling modes and the critical loads associated with these modes can be obtained.Analysis results of a few numerical examples are shown and compared with other researchers' results available.
机译:本文提出了一种基于自适应h细化方法的折叠板结构有限元线性屈曲分析方法。这项研究中使用的可变节点平壳单元(CLS,Choi和Lee 1995)拥有钻探自由度,该DOF除了改善了单元的性能外,还允许以每个节点六个自由度的方式轻松连接到其他单元。因此,可以使用这些已开发的扁平壳单元来分析难以找到解析解的折叠板结构。通过引入具有Physcla中侧节点的可变节点单元,在连接不同层图案时会遇到一些困难为了克服这一缺点,在四边形网格上进行自适应h细化是很常见的。为了获得更好的应力场以进行误差估计,使用了超收敛补丁恢复。收敛屈曲模式和与这些模式相关的临界载荷给出了几个数值示例的分析结果,并将其与其他研究人员的结果进行比较。

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