Free vibration of two-directional functionally graded material (2-D FGM) beams is studied by the finite element method (FEM). The material properties are assumed to be graded in both the thickness and longitudinal directions by a power-law distribution. Equations of motion based on Timoshenko beam theory are derived from Hamilton's principle. A higher-order beam element using hierarchical functions to interpolate the displacements and rotation is formulated and employed in the analysis. In order to improve the efficiency of the element, the shear strain is constrained to constant. Validation of the derived element is confirmed by comparing the natural frequencies obtained in the present paper with the data available in the literature. Numer...
In the present paper, we offer a higher-order shear deformation theory for bending of functionally g...
Dynamic analysis of FGM Timoshenko beam is formulated in the frequency domain taking into account th...
In this paper, a finite element procedure for static analysis of functionally graded material (FGM) ...
The free vibration of functionally graded Timoshenko beams is investigated by developing the dynamic...
Free vibration analysis of functionally graded beams is carried out for various classical boundary c...
AbstractA theoretical study on free vibration behavior of pre-stressed functionally graded material ...
A theoretical study on free vibration behavior of pre-stressed functionally graded material (FGM) be...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
This article presents the static bending of two-directional functionally graded (FG) beam by using s...
In this work, transient and free vibration analyses are illustrated for a functionally graded Timosh...
This paper investigates free vibration of functionally graded beams (FG beams) resting on Winkler fo...
In the present chapter functionally graded materials (FGMs) and structures are presented. In particu...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
Free and forced vibration analysis of two-directional functionally graded sandwich (2D-FGSW) beams u...
In the present work, geometric nonlinearity is taken into consideration to study the free vibration ...
In the present paper, we offer a higher-order shear deformation theory for bending of functionally g...
Dynamic analysis of FGM Timoshenko beam is formulated in the frequency domain taking into account th...
In this paper, a finite element procedure for static analysis of functionally graded material (FGM) ...
The free vibration of functionally graded Timoshenko beams is investigated by developing the dynamic...
Free vibration analysis of functionally graded beams is carried out for various classical boundary c...
AbstractA theoretical study on free vibration behavior of pre-stressed functionally graded material ...
A theoretical study on free vibration behavior of pre-stressed functionally graded material (FGM) be...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
This article presents the static bending of two-directional functionally graded (FG) beam by using s...
In this work, transient and free vibration analyses are illustrated for a functionally graded Timosh...
This paper investigates free vibration of functionally graded beams (FG beams) resting on Winkler fo...
In the present chapter functionally graded materials (FGMs) and structures are presented. In particu...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
Free and forced vibration analysis of two-directional functionally graded sandwich (2D-FGSW) beams u...
In the present work, geometric nonlinearity is taken into consideration to study the free vibration ...
In the present paper, we offer a higher-order shear deformation theory for bending of functionally g...
Dynamic analysis of FGM Timoshenko beam is formulated in the frequency domain taking into account th...
In this paper, a finite element procedure for static analysis of functionally graded material (FGM) ...