Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) supported plates is presented based on higher order shear/shear-normal deformations theories (HOSTs/HOSNTs). The theoretical models are based on Taylor’s series expansion of in-plane and transverse displacements in thickness coordinate defining the plate deformations. Some of these advanced models account for the effects of transverse shear deformations, transverse normal deformation and non-linear variation of in-plane displacements through plate’s thickness. Functionally graded materials (FGMs) are idealized as continua with mechanical properties changing smoothly with respect to spatial coordinates. The material properties of FG plates are as...
In this paper, various efficient higher-order shear deformation theories are presented for bending a...
Closed-form solution of a special higher-order shear and normal deformable plate theory is presented...
In this study, a dynamic stiffness method for free vibration analysis of moderately thick function-a...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
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 ...
A higher-order shear and normal deformations plate theory is employed for stress analysis and free v...
Functionally graded materials (FGMs) are the potential candidates under consideration for designing ...
Free vibration analysis of plates made of functionally graded materials and resting on elastic found...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
Static analysis of orthotropic functionally graded elastic, rectangular, and simply supported (diaph...
Static analysis of orthotropic functionally graded (FG) elastic, rectangular, and simply supported (...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
In this paper, various efficient higher-order shear deformation theories are presented for bending a...
Closed-form solution of a special higher-order shear and normal deformable plate theory is presented...
In this study, a dynamic stiffness method for free vibration analysis of moderately thick function-a...
Free vibration response of functionally graded (FG) elastic, rectangular, and simply (diaphragm) sup...
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 ...
A higher-order shear and normal deformations plate theory is employed for stress analysis and free v...
Functionally graded materials (FGMs) are the potential candidates under consideration for designing ...
Free vibration analysis of plates made of functionally graded materials and resting on elastic found...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
Static analysis of orthotropic functionally graded elastic, rectangular, and simply supported (diaph...
Static analysis of orthotropic functionally graded (FG) elastic, rectangular, and simply supported (...
In this paper, we have used an analytical method to analyze the vibratory behavior of plates in mate...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
In this paper, various efficient higher-order shear deformation theories are presented for bending a...
Closed-form solution of a special higher-order shear and normal deformable plate theory is presented...
In this study, a dynamic stiffness method for free vibration analysis of moderately thick function-a...