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首页> 外文期刊>Structural Engineering and Mechanics >New twelve node serendipity quadrilateral plate bending element based on Mindlin-Reissner theory using Integrated Force Method
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New twelve node serendipity quadrilateral plate bending element based on Mindlin-Reissner theory using Integrated Force Method

机译:基于Mindlin-Reissner理论和集成力法的新型十二节点四边形板弯曲元件

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摘要

The Integrated Force Method (IFM) is a novel matrix formulation developed for analyzing the civil, mechanical and aerospace engineering structures. In this method all independent/internal forces are treated as unknown variables which are calculated by simultaneously imposing equations of equilibrium and compatibility conditions. This paper presents a new 12-node serendipity quadrilateral plate bending element MQP12 for the analysis of thin and thick plate problems using IFM. The Mindlin-Reissner plate theory has been employed in the formulation which accounts the effect of shear deformation. The performance of this new element with respect to accuracy and convergence is studied by analyzing many standard benchmark plate bending problems. The results of the new element MQP12 are compared with those of displacement-based 12-node plate bending elements available in the literature. The results are also compared with exact solutions. The new element MQP12 is free from shear locking and performs excellent for both thin and moderately thick plate bending situations.
机译:综合力法(IFM)是一种新颖的矩阵公式,用于分析土木,机械和航空工程结构。在这种方法中,所有独立/内力都被视为未知变量,这些变量是通过同时施加平衡和相容条件方程来计算的。本文提出了一种新的12节点巧合四边形板弯曲元件MQP12,用于使用IFM分析薄板和厚板问题。在配方中采用了Mindlin-Reissner板理论,该理论考虑了剪切变形的影响。通过分析许多标准基准板弯曲问题,研究了这种新元件在精度和收敛性方面的性能。将新元件MQP12的结果与文献中基于位移的12节点板弯曲元件的结果进行了比较。还将结果与精确的解决方案进行比较。新元件MQP12不受剪切锁定,在薄板和中厚板弯曲情况下均表现出色。

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