In this paper, we study buckling of radially FGM circular plates. In a previous study, a fourth-order polynomial expressing the exact solution of a linear elastic problem was used as buckling mode shape. To generalise such investigation, in this contribution the buckling mode is postulated to take the shape of a fifth-order polynomial function of the radial coordinate. The flexural rigidity is consequently sought as a polynomial of suitable order, expressing the functional grading. New solutions in closed form are then obtained by a semi-inverse method. It is found that suitable choices of functional grading may increase the buckling load up to 246% with respect to the homogeneous and uniform cases
Axisymmetric bending and stretching of functionally graded solid and annular circular plates is stud...
In this paper, an efficient and simple refined theory is presented for buckling analysis of function...
The critical buckling load for a FGM plate under a linearly distributed in-plane load is determined....
In this paper we study axisymmetric buckling of radially graded circular plates. The flexural rigidi...
This short note considers thin circular plates, functionally graded in both axial and transverse dir...
Abstract: In this paper, the buckling analysis of circular, solid and annular functionally graded th...
Presented herein is the exact solution of mechanical buckling response of FGM (Functionally Graded M...
The buckling analysis of functionally graded materials (FGM) axisymmetric plate-shell type structure...
The mechanical buckling analysis of rectangular functionally graded plates under different axial loa...
In this paper, several analyses were conducted to investigate the buckling behavior of Functionally ...
Abstract An investigation on the effect of uniform tensile in-plane force on the radially symmetric ...
Functionally graded materials are materials with a spatial variation of material properties. The FGM...
Presented herein are the exact axisymmetric buckling solutions of Reddy circular plates on the Paste...
This paper concerns the elastic buckling of radial, uniformly loaded, thin circular plates that are ...
This brief note is concerned with the elastic buckling problem of a circular plate subjected to both...
Axisymmetric bending and stretching of functionally graded solid and annular circular plates is stud...
In this paper, an efficient and simple refined theory is presented for buckling analysis of function...
The critical buckling load for a FGM plate under a linearly distributed in-plane load is determined....
In this paper we study axisymmetric buckling of radially graded circular plates. The flexural rigidi...
This short note considers thin circular plates, functionally graded in both axial and transverse dir...
Abstract: In this paper, the buckling analysis of circular, solid and annular functionally graded th...
Presented herein is the exact solution of mechanical buckling response of FGM (Functionally Graded M...
The buckling analysis of functionally graded materials (FGM) axisymmetric plate-shell type structure...
The mechanical buckling analysis of rectangular functionally graded plates under different axial loa...
In this paper, several analyses were conducted to investigate the buckling behavior of Functionally ...
Abstract An investigation on the effect of uniform tensile in-plane force on the radially symmetric ...
Functionally graded materials are materials with a spatial variation of material properties. The FGM...
Presented herein are the exact axisymmetric buckling solutions of Reddy circular plates on the Paste...
This paper concerns the elastic buckling of radial, uniformly loaded, thin circular plates that are ...
This brief note is concerned with the elastic buckling problem of a circular plate subjected to both...
Axisymmetric bending and stretching of functionally graded solid and annular circular plates is stud...
In this paper, an efficient and simple refined theory is presented for buckling analysis of function...
The critical buckling load for a FGM plate under a linearly distributed in-plane load is determined....