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Journal ArticleDOI

Bending and free vibration analysis of functionally graded plates using a simple shear deformation theory and the concept the neutral surface position

TLDR
In this article, a new first-order shear deformation theory is developed for bending and dynamic behaviors of functionally graded plates, and the number of unknowns of this theory is the least one comparing with the traditional firstorder and the other higher order deformation theories.
Abstract
A new first-order shear deformation theory is developed for bending and dynamic behaviors of functionally graded plates. Moreover, the number of unknowns of this theory is the least one comparing with the traditional first-order and the other higher order shear deformation theories. The equations governing the axial and transverse deformations of functionally graded plates are derived based on the present first-order shear deformation plate theory and the physical neutral surface concept. There is no stretching–bending coupling effect in the neutral surface-based formulation, and consequently, the governing equations and boundary conditions of functionally graded plates based on neutral surface have the simple forms as those of isotropic plates. To examine accuracy of the present formulation, several comparison studies are investigated. It can be concluded that the proposed theory is accurate and simple in solving the static bending and free vibration behaviors of functionally graded plates.

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Citations
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A novel quasi-3D hyperbolic theory for free vibration of FG plates with porosities resting on Winkler/Pasternak/Kerr foundation

TL;DR: In this article, a quasi-3D hyperbolic theory is presented for the free vibration analysis of functionally graded (FG) porous plates resting on elastic foundations by dividing transverse displacement into bending, shear, and thickness stretching parts.
Journal ArticleDOI

Thermal buckling and postbuckling of functionally graded graphene nanocomposite plates

TL;DR: In this paper, a modified Halpin-Tsai micromechanics model that takes into account the GPL geometry effect is adopted to estimate the effective Young's modulus of GPLRC layers.
Journal ArticleDOI

Post-buckling analysis of functionally graded nanobeams incorporating nonlocal stress and microstructure-dependent strain gradient effects

TL;DR: In this article, a size-dependent Euler-Bernoulli beam model is proposed to investigate the scaling effect on the post-buckling behaviors of functionally graded (FG) nanobeams with the von Karman geometric nonlinearity.
Journal ArticleDOI

Hygro-thermo-mechanical bending of S-FGM plates resting on variable elastic foundations using a four-variable trigonometric plate theory

TL;DR: In this article, the hygrothermo-mechanical bending behavior of sigmoid functionally graded material (S-FGM) plate resting on variable two-parameter elastic foundations is discussed using a four-variable refined plate theory.
Journal ArticleDOI

Thermal stability of functionally graded sandwich plates using a simple shear deformation theory

TL;DR: In this article, a simple first-order shear deformation theory is developed and validated for a variety of numerical examples of the thermal buckling response of functionally graded sandwich plates with various boundary conditions.
References
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Journal ArticleDOI

Nonlinear transient thermoelastic analysis of functionally graded ceramic-metal plates

TL;DR: In this paper, the static and dynamic response of the functionally graded material (fgm) plates are investigated by varying the volume fraction of the ceramic and metallic constituents using a simple power law distribution.
Book

Energy principles and variational methods in applied mechanics

J. N. Reddy
TL;DR: In this paper, the authors present a review of the work, energy, and variational calculus of solid mechanics and their application in the analysis of plate models. But their focus is on the theory and analysis of plates.
Journal Article

The concept of fgm

M Koizumi
- 01 Jan 1993 - 
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