This paper presents a free vibration analysis of functionally graded material (FGM) plates that are partially submerged in an incompressible, inviscid fluid. The FGM plates with four gradient types of continuously varying material properties along the thickness direction, including the power law, exponential, sinusoidal and cosine forms, are studied to examine various distributions of material properties. The plate is modeled based on the Mindlin Plate Theory (MPT), and the fluid loading effect on the FGM plates is modeled using the method of added mass. The variational principle is applied to derive the governing equations of this fluid-plate interaction system. The differential quadrature (DQ) method is used to solve this problem by conve...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
In this study, the effect of porosity distribution pattern on the free vibration analysis of porous ...
This research deals with free vibration and static bending of a simply supported functionally graded...
This paper studies the free vibration of the variable thickness beam made of functionally graded mat...
In this paper, an analytical solution for the analysis of the free vibration of plates in functional...
This study investigates the free vibrations of functionally graded porous (FGP) plates in contact wi...
International audienceIn this paper hyperbolic shear deformation plate theory is presented for bendi...
A semi-analytical method is developed to consider free vibrations of a functionally graded elastic p...
This work focuses on the hydroelastic vibration of vertical functionally graded (FG) microplates par...
In this paper, the free vibration analysis of rectangular plates composed of functionally graded mat...
The present article copes with the analysis of free vibration of functionally graded plates with tem...
The properties of functionally gradient materials (FGM) are closely related to porosity, which has e...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
A general approach for free vibration of functionally graded materials (FGMs) plates based on second...
Abstract In this paper, a size-dependent microscale plate model is developed to describe the bending...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
In this study, the effect of porosity distribution pattern on the free vibration analysis of porous ...
This research deals with free vibration and static bending of a simply supported functionally graded...
This paper studies the free vibration of the variable thickness beam made of functionally graded mat...
In this paper, an analytical solution for the analysis of the free vibration of plates in functional...
This study investigates the free vibrations of functionally graded porous (FGP) plates in contact wi...
International audienceIn this paper hyperbolic shear deformation plate theory is presented for bendi...
A semi-analytical method is developed to consider free vibrations of a functionally graded elastic p...
This work focuses on the hydroelastic vibration of vertical functionally graded (FG) microplates par...
In this paper, the free vibration analysis of rectangular plates composed of functionally graded mat...
The present article copes with the analysis of free vibration of functionally graded plates with tem...
The properties of functionally gradient materials (FGM) are closely related to porosity, which has e...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
A general approach for free vibration of functionally graded materials (FGMs) plates based on second...
Abstract In this paper, a size-dependent microscale plate model is developed to describe the bending...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
In this study, the effect of porosity distribution pattern on the free vibration analysis of porous ...
This research deals with free vibration and static bending of a simply supported functionally graded...