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Application of the quadrilateral area coordinate method:a new element for laminated composite plate bending problems 被引量:6
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作者 Song Cen Xiangrong Fu +2 位作者 Yuqiu Long Hongguang Li Zhenhan Yao 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2007年第5期561-575,共15页
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 model... 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-rocessing 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. 展开更多
关键词 Quadrilateral Area Coordinate (QAC) Finite element Laminated composite plate First-order shear deformation theory (FSDT) hybrid post-processing procedure
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Hybrid Post-Processing Procedure for Displacement-Based Plane Elements
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作者 Xiaoming Chen Song Cen +1 位作者 Jianyun Sun Yungui Li 《Journal of Applied Mathematics and Physics》 2013年第6期15-19,共5页
In the analysis of high-rise building, traditional displacement-based plane elements are often used to get the in-plane internal forces of the shear walls by stress integration. Limited by the singular problem produce... In the analysis of high-rise building, traditional displacement-based plane elements are often used to get the in-plane internal forces of the shear walls by stress integration. Limited by the singular problem produced by wall holes and the loss of precision induced by using differential method to derive strains, the displacement-based elements cannot always present accuracy enough for design. In this paper, the hybrid post-processing procedure based on the Hellinger-Reissner variational principle is used for improving the stress precision of two quadrilateral plane elements. In order to find the best stress field, three different forms are assumed for the displacement-based plane elements and with drilling DOF. Numerical results show that by using the proposed method, the accuracy of stress solutions of these two displacement-based plane elements can be improved. 展开更多
关键词 FINITE ELEMENT Displacement-Based PLANE ELEMENT hybrid post-processing procedure
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用杂交法改善应力解的新型复合材料层合板单元 被引量:9
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作者 岑松 龙驭球 姚振汉 《工程力学》 EI CSCD 北大核心 2002年第2期7-16,共10页
本文给出一种基于一阶剪切变形理论(FSDT)新型的、无闭锁的位移型四边形复合材料层合板单元TMQ20的列式;并根据Hellinger-Reissner变分原理,针对位移型复合材料板单元提出了一种新型应力杂交化后处理方法来改善单元计算应力的能力,使位... 本文给出一种基于一阶剪切变形理论(FSDT)新型的、无闭锁的位移型四边形复合材料层合板单元TMQ20的列式;并根据Hellinger-Reissner变分原理,针对位移型复合材料板单元提出了一种新型应力杂交化后处理方法来改善单元计算应力的能力,使位移型单元可以简单和正确地预测层合板的应力,特别是层间横向剪应力的解。数值算例表明,经过改善的TMQ20单元具有位移型和杂交型有限元的双重优点,它不仅自由度少,列式简单,而且对位移和应力都可以得到高精度的结果,适用于从薄到中等厚度的复合材料层合板的计算。本文所提出的杂交化后处理方法的概念适用于改善任何种类的位移型单元的应力解。 展开更多
关键词 杂交法 应力解 复合材料 层合板单元 一阶剪切变形理论
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三角形层合板单元及应力解的杂交化后处理
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作者 龙志飞 杨燕艳 岑松 《中国矿业大学学报》 EI CAS CSCD 北大核心 2006年第6期792-798,共7页
基于一阶剪切变形理论(FSDT),构造了一个新型无闭锁的三角形复合材料层合板单元CGCLLM-T9,并根据Hellinger-Reissner变分原理,运用应力杂交化后处理方法来改善此位移型复合材料板单元所得应力解的精度,使得此单元能够简单、准确地预测... 基于一阶剪切变形理论(FSDT),构造了一个新型无闭锁的三角形复合材料层合板单元CGCLLM-T9,并根据Hellinger-Reissner变分原理,运用应力杂交化后处理方法来改善此位移型复合材料板单元所得应力解的精度,使得此单元能够简单、准确地预测出层合板的应力,特别是层间横向剪应力,本单元可适用于复杂边界问题.数值算例表明,此单元不仅自由度少,列式简单,且可以得到较高精度的位移解和应力解;是一种性能较好的厚薄板通用的复合材料层合板三角形单元. 展开更多
关键词 有限元 复合材料层合板 一阶剪切变形理论 杂交化后处理
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