The present study deals with the free torsional vibration of a composite conical shell made of a polymeric matrix reinforced with carbon nanotubes (CNTs). Distribution of CNTs across the thickness of the conical shell may be uniform or functionally graded. Five different cases of functionally graded reinforcements are considered. First-order shear deformable shell theory compatible with the Donnell kinematic assumptions is used to establish the motion equations of the shell. These equations are two coupled equations which should be treated as an eigenvalue problem. The generalized differential quadrature method is used to obtain a numerical solution for the torsional frequency parameters and the associated mode shapes of the shell. After va...
Based on the classical shell theory, the linear dynamic response of functionally graded carbon nanot...
none3siIn the present research, the free vibration characteristics of a skew cylindrical panel made ...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical shells r...
This study investigates the static and free vibration behavior of rotating functionally graded (FG) ...
This study investigates the static and free vibration behavior of rotating functionally graded (FG) ...
none4siThis study investigates the static and free vibration behavior of rotating functionally grade...
In the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC) conic...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
none4siIn the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC...
In the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC) conic...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This article deals with the vibrational behavior of composite conical shells (CCSs) reinforced with ...
Based on the classical shell theory, the linear dynamic response of functionally graded carbon nanot...
Based on the classical shell theory, the linear dynamic response of functionally graded carbon nanot...
none3siIn the present research, the free vibration characteristics of a skew cylindrical panel made ...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical shells r...
This study investigates the static and free vibration behavior of rotating functionally graded (FG) ...
This study investigates the static and free vibration behavior of rotating functionally graded (FG) ...
none4siThis study investigates the static and free vibration behavior of rotating functionally grade...
In the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC) conic...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
none4siIn the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC...
In the present work, a free vibration analysis of Carbon Nanotube-Reinforced Composite (CNTRC) conic...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This article deals with the vibrational behavior of composite conical shells (CCSs) reinforced with ...
Based on the classical shell theory, the linear dynamic response of functionally graded carbon nanot...
Based on the classical shell theory, the linear dynamic response of functionally graded carbon nanot...
none3siIn the present research, the free vibration characteristics of a skew cylindrical panel made ...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical shells r...