The paper proposes a Ritz-type solution for free vibration and buckling analysis thin-walled composite and functionally graded sandwich I-beams. The variation of material through the thickness of functionally graded beams follows the power-law distribution. The displacement field is based on the first-order shear deformation theory, which can reduce to non-shear deformable one. The governing equations of motion are derived from Lagrange's equations. Ritz method is used to obtain the natural frequencies and critical buckling loads of thin-walled beams for both non-shear deformable and shear deformable theory. Numerical results are compared to those from previous works and investigate the effects of fiber angle, material distribution, span-to...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...
Vibration and buckling analysis of composite beams with arbitrary lay-ups using refined shear deform...
An analytical method for vibration and buckling behaviours of Functionally Graded (FG) beams with va...
The paper proposes a Ritz-type solution for free vibration and buckling analysis thin-walled composi...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model applicable to the vibration analysis of thin-walled composite I-beams wit...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
The state space approach is used to provide analytical solution for fundamental frequency analysis o...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...
Vibration and buckling analysis of composite beams with arbitrary lay-ups using refined shear deform...
An analytical method for vibration and buckling behaviours of Functionally Graded (FG) beams with va...
The paper proposes a Ritz-type solution for free vibration and buckling analysis thin-walled composi...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
This paper proposes a new higher-order shear deformation theory for buckling and free vibration anal...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model applicable to the vibration analysis of thin-walled composite I-beams wit...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
The state space approach is used to provide analytical solution for fundamental frequency analysis o...
This paper presents a finite element model for free vibration and buckling analyses of functionally ...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A new higher-order shear deformation theory for static, buckling and free vibration analysis of func...
Vibration and buckling analysis of composite beams with arbitrary lay-ups using refined shear deform...
An analytical method for vibration and buckling behaviours of Functionally Graded (FG) beams with va...