A mixed 8-node hexahedral element based on the Hu-Washizu principle and the field extrapolation technique

被引:14
|
作者
Chen, YI
Wu, GY
机构
[1] Minist Transportat & Commun, Bur High Speed Rail, Banchiao 220, Taipei, Taiwan
[2] Cent Police Univ, Dept Fire Sci, Taoyuan 333, Taiwan
关键词
Hu-Washizu principle; field extrapolation; assumed strain formulation; eight-node parallelepiped; mixed formulation; shear and membrane locking;
D O I
10.12989/sem.2004.17.1.113
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A mixed eight-node hexahedral element formulated via the Hu-Washizu principle as well as the field extrapolation technique is presented. The mixed element with only three translational degrees of freedom at each node can provide extremely accurate and reliable performance for popular benchmark problems such as spacial beams, plates, shells as well as general three-dimensional elasticity problems. Numerical calculations also show that when extremely skewed and coarse meshes and nearly incompressible materials are used, the proposed mixed element can still possess excellent behaviour. The mixed formulation starts with introduction of a parallelepiped domain associated with the given general eight-node hexahedral element. Then, the assumed strain field at the nodal level is constructed via the Hu-Washizu variational principle for that associated parallelepiped domain. Finally, the assumed strain field at the nodal level of the given hexahedral element is established by using the field extrapolation technique, and then by using the trilinear shape functions the assumed strain field of the whole element domain is obtained. All matrices involved in establishing the element stiffness matrix can be evaluated analytically and expressed explicitly; however, a 24 by 24 matrix has to be inverted to construct the displacement extrapolation matrix. The proposed hexahedral element satisfies the patch test as long as the element with a shape of parallelepiped.
引用
收藏
页码:113 / 140
页数:28
相关论文
共 50 条
  • [41] Reduced-Integrated 8-Node Hexahedral Solid-Shell Element for the Macroscopic Forming Simulation of Continuous Fibre-Reinforced Polymers
    Schaefer, Bastian
    Doerr, Dominik
    Kaerger, Luise
    23RD INTERNATIONAL CONFERENCE ON MATERIAL FORMING, 2020, 47 : 134 - 139
  • [42] A novel unsymmetric 8-node plane element immune to mesh distortion under a quadratic displacement field
    Rajendran, S
    Liew, KM
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2003, 58 (11) : 1713 - 1748
  • [43] A novel triangular boundary crack front element for 3D crack problems based on 8-node serendipity element
    Xie, Guizhong
    Zhou, Fenglin
    Zhang, Dehai
    Wen, Xiaoyu
    Li, Hao
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2019, 105 : 296 - 302
  • [44] 8-node unsymmetric distortion-immune element based on Airy stress solutions for plane orthotropic problems
    Shang, Yan
    Cen, Song
    Zhou, Ming-Jue
    ACTA MECHANICA, 2018, 229 (12) : 5031 - 5049
  • [45] 8-node unsymmetric distortion-immune element based on Airy stress solutions for plane orthotropic problems
    Yan Shang
    Song Cen
    Ming-Jue Zhou
    Acta Mechanica, 2018, 229 : 5031 - 5049
  • [46] A mesh distortion tolerant 8-node solid element based on the partition of unity method with inter-element compatibility and completeness properties
    Ooi, E. T.
    Rajendran, S.
    Yeo, J. H.
    Zhang, B. R.
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2007, 43 (10) : 771 - 787
  • [47] DISPLACEMENT AND STRESS PREDICTIONS FROM FIELD-CONSISTENT AND LINE-CONSISTENT VERSIONS OF THE 8-NODE MINDLIN PLATE ELEMENT
    NAGANARAYANA, BP
    PRATHAP, G
    COMPUTERS & STRUCTURES, 1989, 33 (04) : 1095 - 1106
  • [48] An 8-Node Solid-Shell Finite Element based on Assumed Bending Strains and Cell-Based Smoothed Membrane Strains for Static Analysis of Plates and Shells
    Thanh Chau-Dinh
    Nhat Le-Tran
    JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS, 2020, 6 : 1335 - 1347
  • [49] Detection of breathing cracks in a beam using dynamic response (proposition of a detection technique using a finite element method based on the mixed variational principle)
    Kamiya, Keisuke
    Yoshinaga, Terumitsu
    Yasuda, Kimihiko
    Nihon Kikai Gakkai Ronbunshu, C Hen/Transactions of the Japan Society of Mechanical Engineers, Part C, 2007, 73 (11): : 2875 - 2882
  • [50] A Simple Locking-Alleviated 3D 8-Node Mixed-Collocation C0 Finite Element with Over-Integration, for Functionally-Graded and Laminated Thick-Section Plates and Shells, with & without Z-Pins
    Dong, Leiting
    El-Gizawy, Ahmed S.
    Juhany, Khalid A.
    Atluri, Satya N.
    CMC-COMPUTERS MATERIALS & CONTINUA, 2014, 41 (03): : 163 - 192