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A Simplified First-order Shear Deformation Theory for Bending, Buckling and Free Vibration Analyses of Isotropic Plates on Elastic Foundations

Authors
Park, MinwoChoi, Dong-Ho
Issue Date
Apr-2018
Publisher
대한토목학회
Keywords
plates; bending; buckling; vibration; elastic foundations; first-order shear deformation theory
Citation
KSCE Journal of Civil Engineering, v.22, no.4, pp.1235 - 1249
Indexed
SCIE
SCOPUS
KCI
Journal Title
KSCE Journal of Civil Engineering
Volume
22
Number
4
Start Page
1235
End Page
1249
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/3137
DOI
10.1007/s12205-017-1517-6
ISSN
1226-7988
Abstract
This paper presents analytical solutions for bending, buckling and free vibration analyses of isotropic plates on elastic foundations using a simplified first-order shear deformation theory. Unlike the conventional first-order shear deformation theory, the present theory contains only two variables and has many similarities to the classical plate theory. For the elastic foundations, the Pasternak model which has two parameters is used. Equations of motion are derived from Hamilton's principle. Analytical solutions of deflections, moments, shear forces, buckling loads and natural frequencies are obtained for rectangular plates with various boundary conditions. Numerical examples for various aspect ratios, side-to-thickness ratios and foundation parameters are presented to verify the validity of the present theory. Comparative study shows that the present theory is accurate and efficient in predicting bending, buckling and free vibration responses of isotropic plates on elastic foundations. Parametric study shows the effect of the elastic foundations on the behavior of the plates.
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Choi, Dong Ho
COLLEGE OF ENGINEERING (DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING)
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