The present study investigates buckling characteristics of both nonlinear symmetric power and sigmoid functionally graded (FG) beams. The volume fractions of metal and ceramic are assumed to be distributed through a beam thickness by the sigmoid-law distribution (S-FGM), and the symmetric power function (SP-FGM). These functions have smooth variation of properties across the boundary rather than the classical power law distribution which permits gradually variation of stresses at the surface boundary and eliminates delamination. The Voigt model is proposed to homogenize micromechanical properties and to derive the effective material properties. The Euler-Bernoulli beam theory is selected to describe Kinematic relations. A finite element mod...
There are many beam models to simulate the variable thickness functionally graded material (FGM) bea...
This study investigates the mechanical behaviours of functionally graded (FG) microbeams based on th...
AbstractThe present work deals with geometrically non-linear post-buckling load–deflection behavior ...
This paper studies the geometrically non-linear bending behavior of functionally graded beams subjec...
In this paper, the systematic arrangements are acquired to foresee the static behavior of the P-FGM ...
In this paper, the systematic arrangements are acquired to foresee the static behavior of the P-FGM ...
The dynamic stability of functionally graded material (FGM) beams subjected to parametric excitation...
This paper presents thermal-mechanical-electrical buckling analysis of micro-beams that are made of ...
Buckling of beams made of functionally graded materials (FGM) under thermomechanical loading is anal...
AbstractIn this study, strain gradient theory is used to show the small scale effects on bending, vi...
In this paper, nonlinear buckling responses of functionally graded (FG) thin-walled open section bea...
An analytical method for vibration and buckling behaviours of Functionally Graded (FG) beams with va...
The present investigation is an attempt to contribute towards the improved understanding of the buck...
In this paper, we investigate the symmetric snap-through buckling and the asymmetric bifurcation beh...
In this paper, we investigate the symmetric snap-through buckling and the asymmetric bifurcation beh...
There are many beam models to simulate the variable thickness functionally graded material (FGM) bea...
This study investigates the mechanical behaviours of functionally graded (FG) microbeams based on th...
AbstractThe present work deals with geometrically non-linear post-buckling load–deflection behavior ...
This paper studies the geometrically non-linear bending behavior of functionally graded beams subjec...
In this paper, the systematic arrangements are acquired to foresee the static behavior of the P-FGM ...
In this paper, the systematic arrangements are acquired to foresee the static behavior of the P-FGM ...
The dynamic stability of functionally graded material (FGM) beams subjected to parametric excitation...
This paper presents thermal-mechanical-electrical buckling analysis of micro-beams that are made of ...
Buckling of beams made of functionally graded materials (FGM) under thermomechanical loading is anal...
AbstractIn this study, strain gradient theory is used to show the small scale effects on bending, vi...
In this paper, nonlinear buckling responses of functionally graded (FG) thin-walled open section bea...
An analytical method for vibration and buckling behaviours of Functionally Graded (FG) beams with va...
The present investigation is an attempt to contribute towards the improved understanding of the buck...
In this paper, we investigate the symmetric snap-through buckling and the asymmetric bifurcation beh...
In this paper, we investigate the symmetric snap-through buckling and the asymmetric bifurcation beh...
There are many beam models to simulate the variable thickness functionally graded material (FGM) bea...
This study investigates the mechanical behaviours of functionally graded (FG) microbeams based on th...
AbstractThe present work deals with geometrically non-linear post-buckling load–deflection behavior ...