In this study, analytical stress analysis of annular rotating discs made of functionally graded materials (FGMs) subjected to uniform thermal loads were performed at different temperatures. The elasticity modulus and thermal expansion coefficient of the discs that has constant Poisson's ratio were assumed to vary radially according to power law functions. A gradient parameter 17 was chosen between (-0.5) and (+0.5). The change of the stresses, displacements, elasticity modulus and thermal expansion coefficient with respect to the gradient parameter n were investigated and presented in the paper. It was found that the disc became isotropic disc when n equals to zero
AbstractIn this study, the elastic stress analysis of annular discs made of functionally graded mate...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...
In this study, analytical stress analysis of annular rotating discs made of functionally graded mate...
AbstractIn this study, the elastic stress analysis of annular discs made of functionally graded mate...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
The analytical study deals with stress analysis of functionally graded rotating annular discs subjec...
This study deals with stress analysis of annular rotating discs made of functionally graded material...
This study deals with stress analysis of annular rotating discs made of functionally graded material...
The present study deals with stress analysis on functionally graded rotating annular discs subjected...
111-118The analytical study deals with stress analysis of functionally graded rotating annular disc...
The analytical study deals with stress analysis of functionally graded rotating annular discs subjec...
The closed-form study deals with stress analysis of annular rotating discs made of functionally grad...
AbstractIn this study, the elastic stress analysis of annular discs made of functionally graded mate...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...
In this study, analytical stress analysis of annular rotating discs made of functionally graded mate...
AbstractIn this study, the elastic stress analysis of annular discs made of functionally graded mate...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
In this study, the elastic stress analysis of annular discs made of functionally graded materials (F...
The analytical study deals with stress analysis of functionally graded rotating annular discs subjec...
This study deals with stress analysis of annular rotating discs made of functionally graded material...
This study deals with stress analysis of annular rotating discs made of functionally graded material...
The present study deals with stress analysis on functionally graded rotating annular discs subjected...
111-118The analytical study deals with stress analysis of functionally graded rotating annular disc...
The analytical study deals with stress analysis of functionally graded rotating annular discs subjec...
The closed-form study deals with stress analysis of annular rotating discs made of functionally grad...
AbstractIn this study, the elastic stress analysis of annular discs made of functionally graded mate...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...
This study deals with stress analysis of functionally graded discs subjected to internal pressure an...