Nonlinear buckling and post-buckling analysis of imperfect porous plates under mechanical loads

Author:

Tu Tran Minh1ORCID,Hoa Le Kha2ORCID,Hung Dang Xuan1,Hai Le Thanh3

Affiliation:

1. Faculty of Industrial and Civil Engineering, University of Civil Engineering, Vietnam

2. Faculty of Basic Science, Military Academy of Logistics, Hanoi 100000, Vietnam

3. Faculty of Civil Engineering, Vinh University, Vietnam

Abstract

The nonlinear buckling and post-buckling response of imperfect porous plates is investigated analytically in this paper. The porous materials with elastic moduli are assumed to vary through the thickness of the plate according to two different distribution types. Governing equations are derived based on the classical shell theory taking into account Von Karman nonlinearity and initial geometrical imperfection. Explicit relations of load–deflection curves for rectangular porous plates are determined by applying stress function and Galerkin’s method. The accuracy of present theoretical formulation is verified by comparing it with available results in the literature. The effects of varying porosity distribution, porosity coefficient, boundary condition and imperfection on post-buckling behavior of the porous plate are studied in detail. A parametric study is carried out to investigate the effects of varying porosity distribution, porosity coefficient, boundary condition and imperfection on post-buckling behavior of the porous plate. The results show that the critical buckling loads decrease with increasing porosity coefficient and the post-buckling curves for nonlinear symmetric porosity distribution are always higher than those for nonlinear non-symmetric porosity.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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