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首页> 外文期刊>Structural Engineering and Mechanics >New nine-node Lagrangian quadrilateral plate element based on Mindlin-Reissner theory using IFM
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New nine-node Lagrangian quadrilateral plate element based on Mindlin-Reissner theory using IFM

机译:基于Mindlin-Reissner理论和IFM的新型九节点拉格朗日四边形板单元

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摘要

This paper presents a new nine-node Lagrangian quadrilateral plate bending element (MQP9) using the Integrated Force Method (IFM) for the analysis of thin and moderately thick plate bending problems. Three degrees of freedom: transverse displacement w and two rotations θ_X and θ_y are considered at each node of the element. The Mindlin-Reissner theory has been employed in the formulation which accounts the effect of shear deformation. Many standard plate bending benchmark problems have been analyzed using the new element MQP9 for various grid sizes via Integrated Force Method to estimate defections and bending moments. These results of the new element MQP9 are compared with those of similar displacement-based plate bending elements available in the literature. The results are also compared with exact solutions. It is observed that the presented new element MQP9 is free from shear locking and produced, in general, excellent results in all plate bending benchmark problems considered.
机译:本文提出了一种新的九节点拉格朗日四边形板弯曲单元(MQP9),它采用了综合力法(IFM)来分析薄板和中厚板的弯曲问题。三个自由度:横向位移w以及两个旋转θ_X和θ_y在元素的每个节点处被考虑。在配方中采用了Mindlin-Reissner理论,该理论考虑了剪切变形的影响。已使用新元素MQP9通过集成力法分析了各种标准尺寸的许多标准板弯曲基准问题,以估计缺陷和弯曲力矩。将新元素MQP9的这些结果与文献中类似的基于位移的板弯曲元素的结果进行了比较。还将结果与精确的解决方案进行比较。可以观察到,提出的新元件MQP9没有剪切锁定,并且在所有考虑的板弯基准问题中都取得了优异的结果。

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