Free vibration analysis of plates made of functionally graded materials and resting on elastic foundation is presented by taking into account the effect of transverse shear deformations. The foundation is described by the Pasternak (two-parameter) model. The material properties of the plate are assumed to vary continuously in the thickness direction by a simple power law distribution in terms of the volume fractions of the constituents. The formulation is based on a higher order hyperbolic shear deformation theory. The equation of motion for thick functionally graded plates is obtained through the Hamilton's principle. The closed form solutions are obtained by using Navier technique and then fundamental frequencies are found by solving the ...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
181-188A non-polynomial hyperbolic based theory has been presented for the free vibration response o...
A refined shear deformation theory for free vibration of functionally graded plates on elastic found...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
This paper presents an efficient shear deformation theory for vibration of functionally graded plate...
In this paper, various efficient higher-order shear deformation theories are presented for bending a...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
A simple, accurate, and unified formulation for the free vibration analysis of functionally graded (...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
A higher order shear and normal deformation theory (HOSNT) is presented for free vibration analysis ...
A higher order shear and normal deformation theory (HOSNT) is presented for free vibration analysis ...
In this article, a new exact closed-form procedure is presented to solve free vibration analysis of ...
Free vibration analysis of functionally graded thick plates on elastic foundation is carried out bas...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
181-188A non-polynomial hyperbolic based theory has been presented for the free vibration response o...
A refined shear deformation theory for free vibration of functionally graded plates on elastic found...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
This paper presents an efficient shear deformation theory for vibration of functionally graded plate...
In this paper, various efficient higher-order shear deformation theories are presented for bending a...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
A simple, accurate, and unified formulation for the free vibration analysis of functionally graded (...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
A higher order shear and normal deformation theory (HOSNT) is presented for free vibration analysis ...
A higher order shear and normal deformation theory (HOSNT) is presented for free vibration analysis ...
In this article, a new exact closed-form procedure is presented to solve free vibration analysis of ...
Free vibration analysis of functionally graded thick plates on elastic foundation is carried out bas...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
181-188A non-polynomial hyperbolic based theory has been presented for the free vibration response o...