The strain-smoothed 4-node quadrilateral finite element

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41

초록

Recently, the strain-smoothed element (SSE) method has been developed for 3-node triangular and 4-node tetrahedral solid elements. The method was also applied for enhancing the membrane performance of a 3-node triangular shell element (MITC3+ element). Using the SSE method, convergence behaviors of the finite elements were significantly improved without additional degrees of freedom. However, the application of the SSE method is limited to constant strain finite elements such as 3-node triangular and 4-node tetrahedral elements. In this paper, the SSE method is applied to a 4-node quadrilateral finite element. Doing so, the piecewise linear shape functions are employed instead of standard bilinear shape functions. The proposed strain-smoothed 4-node quadrilateral element passes all the basic tests, and shows a significantly improved accuracy in various numerical examples. (C) 2020 Elsevier B.V. All rights reserved.

키워드

Finite element analysis; Strain-smoothed element method; Solid elements; 4-node quadrilateral elements; METHOD FS-FEM; MITC3+SHELL ELEMENT; POLYHEDRAL ELEMENTS; MECHANICS PROBLEMS; 8-NODE HEXAHEDRON; CRACK-GROWTH; ES-FEM; SOLIDS; 2D; CONVERGENCE
제목
The strain-smoothed 4-node quadrilateral finite element
저자
Lee, Chaemin; Kim, San; Lee, Phill-Seung
DOI
10.1016/j.cma.2020.113481
발행일
2021-01
유형
Article
저널명
Computer Methods in Applied Mechanics and Engineering
권
373