An element-based 9-node resultant shell element for large deformation analysis of laminated composite plates and shells

被引:22
作者
Han, SC [1 ]
Kim, KD
Kanok-Nukulchai, W
机构
[1] Daewon Sci Coll, Dept Civil Engn, Jecheon 390702, Chung Buk, South Korea
[2] Asian Inst Technol, Sch Civil Engn, Klongluang 12120, Pathumthani, Thailand
关键词
9-node resultant shell element; Element-based Lagrangian Formulation; laminated composite plates and shells; assumed strain method; arc-length control method;
D O I
10.12989/sem.2004.18.6.807
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The Element-Based Lagrangian Formulation of a 9-node resultant-stress shell element is presented for the isotropic and anisotropic composite material. The effect of the coupling term between the bending strain and displacement has been investigated in the warping problem. The strains, stresses and constitutive equations based on the natural co-ordinate have been used throughout the Element-Based Lagrangian Formulation of the present shell element which offers an advantage of easy implementation compared with the traditional Lagrangian Formulation. The element is free of both membrane and shear locking behavior by using the assumed natural strain method such that the element performs very well in thin shell problems. In composite plates and shells, the transverse shear stiffness is defined by an equilibrium approach instead of using the shear correction factor. The arc-length control method is used to trace complex equilibrium paths in thin shell applications. Several numerical analyses are presented and discussed in order to investigate the capabilities of the present shell element. The results showed very good agreement compared with well-established formulations in the literature.
引用
收藏
页码:807 / 829
页数:23
相关论文
共 31 条
[1]  
AHMAD S, 1970, INT J NUMER METH ENG, V2, P419, DOI DOI 10.1002/NME.1620020310
[2]   ASSUMED STRAIN STABILIZATION PROCEDURE FOR THE 9-NODE LAGRANGE SHELL ELEMENT [J].
BELYTSCHKO, T ;
WONG, BL ;
STOLARSKI, H .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 1989, 28 (02) :385-414
[3]  
Chaiomphob T, 1988, STRUCT ENG EARTHQUAK, V5, P205
[4]   A FAST INCREMENTAL-ITERATIVE SOLUTION PROCEDURE THAT HANDLES SNAP-THROUGH [J].
CRISFIELD, MA .
COMPUTERS & STRUCTURES, 1981, 13 (1-3) :55-62
[5]   A NEW 9 NODE DEGENERATED SHELL ELEMENT WITH ENHANCED MEMBRANE AND SHEAR INTERPOLATION [J].
HUANG, HC ;
HINTON, E .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 1986, 22 (01) :73-92
[6]   NON-LINEAR FINITE-ELEMENT ANALYSIS OF SHELLS .1. 3-DIMENSIONAL SHELLS [J].
HUGHES, TJR ;
LIU, WK .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 1981, 26 (03) :331-362
[7]   AN ASSUMED COVARIANT STRAIN BASED 9-NODE SHELL ELEMENT [J].
JANG, JH ;
PINSKY, PM .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 1987, 24 (12) :2389-2411
[8]   ELEMENT-BASED LAGRANGIAN FORMULATION FOR LARGE-DEFORMATION ANALYSIS [J].
KANOKNUKULCHAI, W ;
WONG, WK .
COMPUTERS & STRUCTURES, 1988, 30 (04) :967-974
[9]   Non-linear finite element analysis of composite panels [J].
Kim, K ;
Voyiadjis, GZ .
COMPOSITES PART B-ENGINEERING, 1999, 30 (04) :365-381
[10]   Postbuckling analysis of composite panels with imperfection damage [J].
Kim, KD ;
Park, T ;
Voyiadjis, GZ .
COMPUTATIONAL MECHANICS, 1998, 22 (05) :375-387