This is a review paper containing the governing equations and analytical solutions of the classical and shear deformation theories of functionally graded straight beams. The classical, first-order, and third-order shear deformation theories account for through-thickness variation of two-constituent functionally graded material, modified couple stress (i.e., strain gradient), and the von Karman nonlinearity. Analytical solutions for bending of the linear theories, some of which are not readily available in the literature, are included to show the influence of the material variation, boundary conditions, and loads
The higher-order theory is extended to functionally graded beams (FGBs) with continuously varying ma...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
This is a review paper containing the governing equations and analytical solutions of the classical ...
This is a review paper containing the governing equations and analytical solutions of the classical ...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
In the present paper, we offer a higher-order shear deformation theory for bending of functionally g...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
The objective of this work is to analyze the behavior beams functionally graded, simply supported, u...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
The higher-order theory is extended to functionally graded beams (FGBs) with continuously varying ma...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
This is a review paper containing the governing equations and analytical solutions of the classical ...
This is a review paper containing the governing equations and analytical solutions of the classical ...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
In this paper, various higher-order shear deformation beam theories for bending and free vibration o...
In the present paper, we offer a higher-order shear deformation theory for bending of functionally g...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
The objective of this work is to analyze the behavior beams functionally graded, simply supported, u...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...
The higher-order theory is extended to functionally graded beams (FGBs) with continuously varying ma...
This paper presents the governing equations and analytical solutions of the classical and shear defo...
Static and vibration analysis of functionally graded beams using refined shear deformation theory is...