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Application of the quadrilateral area coordinate method: a new element for laminated composite plate bending problems

机译:四边形面积坐标法的应用:层压复合板弯曲问题的新要素

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Recently, some new quadrilateral finite elements were successfully developed by the Quadrilateral Area Coordinate (QAC) method. Compared with those traditional models using isoparametric coordinates, these new models are less sensitive to mesh distortion. In this paper, a new displacement-based, 4-node 20-DOF (5-DOF per node)quadrilateral bending element based on the first-order shear deformation theory for analysis of arbitrary laminated composite plates is presented. Its bending part is based on the element AC-MQ4, a recent-developed high-performance Mindlin-Reissner plate element formulated by QAC method and the generalized conforming condition method; and its in-plane displacement fields are interpolated by bilinear shape functions in isoparametric coordinates. Furthermore,the hybrid post-processing procedure, which was firstly proposed by the authors, is employed again to improve the stress solutions, especially for the transverse shear stresses. The resulting element, denoted as AC-MQ4-LC, exhibits excellent performance in all linear static and dynamic numerical examples. It demonstrates again that the QAC method, the generalized conforming condition method, and the hybrid post-processing procedure are efficient tools for developing simple, effective and reliable finite element models.
机译:最近,通过四边形区域坐标(QAC)方法成功开发了一些新的四边形有限元。与使用等参坐标的传统模型相比,这些新模型对网格变形不那么敏感。本文基于一阶剪切变形理论,提出了一种基于位移的4节点20自由度(每节点5自由度)四边形弯曲单元,用于任意层合复合板的分析。它的弯曲部分基于AC-MQ4元件,AC-MQ4是通过QAC方法和广义贴合条件法配制的最新开发的高性能Mindlin-Reissner板元件。它的平面位移场由等参坐标中的双线性形状函数插值。此外,作者首先提出的混合后处理程序再次被用来改善应力解,特别是对于横向剪切应力。所得的元件(表示为AC-MQ4-LC)在所有线性静态和动态数值示例中均具有出色的性能。它再次证明了QAC方法,广义符合条件方法和混合后处理程序是开发简单,有效和可靠的有限元模型的有效工具。

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