Vibration of functionally graded sandwich (FGSW) beams under nonuniform motion of a moving load is studied using a third-order shear deformation finite element formulation. The beams consists three layers, a homogeneous ceramic core and two functionally graded faces. Instead of the rotation, the finite element formulation is derived by using the transverse shear rotation as a unknown. Newmark method is used to compute the dynamic response of the beams. Numerical result reveals that the derived formulation is efficient, and it is capable to give accurate vibration characteristics by a small number of the elements. A parametric study is carried out to illustrate the effects of the material distribution, layer thickness ratio and moving load s...
Static and vibration analysis of isotropic and functionally graded sandwich plates using a higher-or...
The dynamic response of functionally graded (FG) porous-nonuniform beams subjected to moving forces ...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...
Free and forced vibration analysis of two-directional functionally graded sandwich (2D-FGSW) beams u...
A bidirectional functionally graded Sandwich (BFGSW) beam model made from three distinct materials i...
A refined third-order shear deformation theory (RTSDT), in which the transverse displacement is spli...
In this research, free and forced vibration of functionally graded sandwich beams is considered usin...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
The dynamic behavior of nonuniform Euler-Bernoulli beams made of transversely functionally graded ma...
A finite element procedure for vibration analysis of multi-span functionally graded material (FGM) b...
The state space approach is used to provide analytical solution for fundamental frequency analysis o...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
A three-dimensional modelling of free vibrations and static response of functionally graded material...
Static and vibration analysis of isotropic and functionally graded sandwich plates using a higher-or...
The dynamic response of functionally graded (FG) porous-nonuniform beams subjected to moving forces ...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...
Free and forced vibration analysis of two-directional functionally graded sandwich (2D-FGSW) beams u...
A bidirectional functionally graded Sandwich (BFGSW) beam model made from three distinct materials i...
A refined third-order shear deformation theory (RTSDT), in which the transverse displacement is spli...
In this research, free and forced vibration of functionally graded sandwich beams is considered usin...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
The dynamic behavior of nonuniform Euler-Bernoulli beams made of transversely functionally graded ma...
A finite element procedure for vibration analysis of multi-span functionally graded material (FGM) b...
The state space approach is used to provide analytical solution for fundamental frequency analysis o...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
A three-dimensional modelling of free vibrations and static response of functionally graded material...
Static and vibration analysis of isotropic and functionally graded sandwich plates using a higher-or...
The dynamic response of functionally graded (FG) porous-nonuniform beams subjected to moving forces ...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...