This research deals with free vibration and static bending of a simply supported functionally graded (FG) plate with the porosity effect. Material properties of the plate which are related to its change are position-dependent. Governing equations of the FG plate are obtained by using the Hamilton’s principle within first-order shear deformation plate theory. In solving the problem, the Navier solution is also used. In this study, the effect of the porosity and material distribution parameters on the static and vibration responses of the FG plate is presented and discussed
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
International audienceThe bending and free vibration of porous functionally graded (PFG) beams resti...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
International audienceIn this paper hyperbolic shear deformation plate theory is presented for bendi...
In this study, the effect of porosity distribution pattern on the free vibration analysis of porous ...
The functionally graded plates (FGP) with two new porosity distributions are examined in this paper....
The functionally graded plates (FGP) with two new porosity distributions are examined in this paper....
In this paper, the free vibration analysis of rectangular plates composed 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...
The present work analyzes the free vibration response of functionally graded (FG) plates made of Alu...
The static bending and free vibration of functionally graded (FG) porous plates were analyzed by a 2...
Static bending, free vibration and buckling of functionally graded porous micro-plates are investiga...
In this scientific work, a new shear deformation theory for free vibration analysis of simply suppor...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
International audienceThe bending and free vibration of porous functionally graded (PFG) beams resti...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...
International audienceIn this paper hyperbolic shear deformation plate theory is presented for bendi...
In this study, the effect of porosity distribution pattern on the free vibration analysis of porous ...
The functionally graded plates (FGP) with two new porosity distributions are examined in this paper....
The functionally graded plates (FGP) with two new porosity distributions are examined in this paper....
In this paper, the free vibration analysis of rectangular plates composed 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...
The present work analyzes the free vibration response of functionally graded (FG) plates made of Alu...
The static bending and free vibration of functionally graded (FG) porous plates were analyzed by a 2...
Static bending, free vibration and buckling of functionally graded porous micro-plates are investiga...
In this scientific work, a new shear deformation theory for free vibration analysis of simply suppor...
Analytical solution of the first-order and third-order shear deformation theories are developed to s...
In this study, two dimensional (2D) and quasi three-dimensional (quasi-3D) shear deformation theorie...
International audienceThe bending and free vibration of porous functionally graded (PFG) beams resti...
AbstractThis paper deals with the numerical solution for free vibration analysis of simply supported...