A refined finite element for first-order plate and shell analysis
- Authors
- Han, Sung-Cheon; Kanok-Nukulchai, Worsak; Lee, Won-Hong
- Issue Date
- 25-Oct-2011
- Publisher
- TECHNO-PRESS
- Keywords
- enhanced membrane and shear interpolation; locking behavior; full integration; refined first-order shear deformation theory; plates and shells
- Citation
- STRUCTURAL ENGINEERING AND MECHANICS, v.40, no.2, pp 191 - 213
- Pages
- 23
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- STRUCTURAL ENGINEERING AND MECHANICS
- Volume
- 40
- Number
- 2
- Start Page
- 191
- End Page
- 213
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/23513
- ISSN
- 1225-4568
1598-6217
- Abstract
- This paper presents an improved 8-node shell element for the analysis of plates and shells. The finite element, based on a refined first-order shear deformation theory, is further improved by the combined use of assumed natural strain method. We analyze the influence of the shell element with the different patterns of sampling points for interpolating different components of strains. Using the assumed natural strain method with proper interpolation functions, the present shell element generates neither membrane nor shear locking behavior even when full integration is used in the formulation. Further, a refined first-order shear deformation theory, which results in parabolic through-thickness distribution of the transverse shear strains from the formulation based on the third-order shear deformation theory, is proposed. This formulation eliminates the need for shear correction factors in the first-order theory. Numerical examples demonstrate that the present element perform better in comparison with other shell elements.
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Collections - 건설환경공과대학 > 건설시스템공학과 > Journal Articles

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