The paper studies free transverse vibrations of axially functionally graded beams with stepped changes in geometry and in material properties. The differential quadrature method with domain decomposition technique is used. The governing equations of motion are based on Timoshenko beam theory and are derived using Hamilton’s principle. Material properties are assumed to vary along the beam in an abrupt or gradual way. General boundary conditions are considered by means of translatory and rotatory springs at both external ends of the beam. Results are presented for different combinations of boundary conditions, step locations and properties of axially functionally graded materials. The effect of dynamic stiffening of beams can be observed in ...
In this thesis, new non-dimensional parameters are introduced, and analytical solutions are develope...
This paper presents the coupled axial-transverse-rotational nonlinear forced vibrations of Timoshenk...
The free vibration characteristics of the axially moving Timoshenko beam under compressive load are ...
The free vibration of functionally graded Timoshenko beams is investigated by developing the dynamic...
In this paper, we study the free vibration of axially functionally graded (AFG) Timoshenko beams, wi...
This paper studies free vibration of functionally graded beams Subjected to Axial Load that is simpl...
In this paper is studied the effect of considering the theory of Timoshenko in the vibration of AFG ...
In this study, free vibration characteristics of a functionally graded Timoshenko beam that undergoe...
This paper investigates free vibration of functionally graded beams (FG beams) resting on Winkler fo...
The free transverse vibrations of axially functionally graded (AFG) cantilever beams with concentrat...
This work presents the highly accurate numerical calculation of the natural frequencies for function...
Abstract. In this paper free vibration of axially functionally graded (FG) beams consisting of two s...
In the present chapter functionally graded materials (FGMs) and structures are presented. In particu...
In this work, transient and free vibration analyses are illustrated for a functionally graded Timosh...
A theoretical study on free vibration behavior of pre-stressed functionally graded material (FGM) be...
In this thesis, new non-dimensional parameters are introduced, and analytical solutions are develope...
This paper presents the coupled axial-transverse-rotational nonlinear forced vibrations of Timoshenk...
The free vibration characteristics of the axially moving Timoshenko beam under compressive load are ...
The free vibration of functionally graded Timoshenko beams is investigated by developing the dynamic...
In this paper, we study the free vibration of axially functionally graded (AFG) Timoshenko beams, wi...
This paper studies free vibration of functionally graded beams Subjected to Axial Load that is simpl...
In this paper is studied the effect of considering the theory of Timoshenko in the vibration of AFG ...
In this study, free vibration characteristics of a functionally graded Timoshenko beam that undergoe...
This paper investigates free vibration of functionally graded beams (FG beams) resting on Winkler fo...
The free transverse vibrations of axially functionally graded (AFG) cantilever beams with concentrat...
This work presents the highly accurate numerical calculation of the natural frequencies for function...
Abstract. In this paper free vibration of axially functionally graded (FG) beams consisting of two s...
In the present chapter functionally graded materials (FGMs) and structures are presented. In particu...
In this work, transient and free vibration analyses are illustrated for a functionally graded Timosh...
A theoretical study on free vibration behavior of pre-stressed functionally graded material (FGM) be...
In this thesis, new non-dimensional parameters are introduced, and analytical solutions are develope...
This paper presents the coupled axial-transverse-rotational nonlinear forced vibrations of Timoshenk...
The free vibration characteristics of the axially moving Timoshenko beam under compressive load are ...