Size-dependent models for bending, buckling, and vibration of functionally graded Kirchhoff and Mindlin plates are developed using a modified couple stress theory. The present models contain one material length scale parameter and can capture the size effect, geometric nonlinearity, and two-constituent material variation through the plate thickness. The equations of motion are derived from Hamilton’s principle based on a modified couple stress theory, the von Karman nonlinear strains, and the power law variation of the material through the thickness of the plate. Analytical solutions for deflection, buckling load, and frequency of a simply supported plate are presented to bring out the effect of the material length scale parameter on ...
Size-dependent functionally graded material thin plate buckling and post-buckling problems are consi...
In this paper, a non-classical microplate model is developed for the axisymmetric nonlinear free vib...
This study presents strain gradient elasticity based procedures for static bending, free vibration a...
Abstract In this paper, a size-dependent microscale plate model is developed to describe the bending...
This paper develops a Mindlin microplate model based on the modified couple stress theory for the fr...
In this paper, the free vibration behavior of post-buckled functionally graded (FG) Mindlin rectangu...
A size-dependent model for bending and free vibration of functionally graded plate is developed base...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
The purposes of this paper are to study bending, buckling, and vibration by considering micro-scale ...
The bending, buckling and free vibration of annular microplates made of functionally graded material...
Modified couple stress based model is presented to investigate statics, dynamics and stability of fu...
This paper aims at thorough investigation of the nonlinear forced vibration characteristics of funct...
This paper aims at thorough investigation of the nonlinear forced vibration characteristics of funct...
AbstractIn this paper a new Kirchhoff plate model is developed for the static analysis of isotropic ...
Size-dependent functionally graded material thin plate buckling and post-buckling problems are consi...
In this paper, a non-classical microplate model is developed for the axisymmetric nonlinear free vib...
This study presents strain gradient elasticity based procedures for static bending, free vibration a...
Abstract In this paper, a size-dependent microscale plate model is developed to describe the bending...
This paper develops a Mindlin microplate model based on the modified couple stress theory for the fr...
In this paper, the free vibration behavior of post-buckled functionally graded (FG) Mindlin rectangu...
A size-dependent model for bending and free vibration of functionally graded plate is developed base...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
The purposes of this paper are to study bending, buckling, and vibration by considering micro-scale ...
The bending, buckling and free vibration of annular microplates made of functionally graded material...
Modified couple stress based model is presented to investigate statics, dynamics and stability of fu...
This paper aims at thorough investigation of the nonlinear forced vibration characteristics of funct...
This paper aims at thorough investigation of the nonlinear forced vibration characteristics of funct...
AbstractIn this paper a new Kirchhoff plate model is developed for the static analysis of isotropic ...
Size-dependent functionally graded material thin plate buckling and post-buckling problems are consi...
In this paper, a non-classical microplate model is developed for the axisymmetric nonlinear free vib...
This study presents strain gradient elasticity based procedures for static bending, free vibration a...