In this paper, a unified solution for vibration analysis of the functionally graded carbon nanotube reinforced composite (FG-CNTRC) cylindrical panels with general elastic supports is carried out via using the Ritz method. The excellent accuracy and reliability of the present method are compared with the results of the classical boundary cases found in the literature. New results are given for vibration characteristics of FG-CNTRC cylindrical panels with various boundary conditions. The effects of the elastic restraint parameters, thickness, subtended angle and volume fraction of carbon nanotubes on the free vibration characteristic of the cylindrical panels are also reported
This paper investigates the free vibration of nanocomposite beams reinforced by single-walled carbon...
Composite plates are structural elements that are commonly used in many fields, such as civil, aeros...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical panels r...
In this study, based on the three-dimensional theory of elasticity, free vibration characteristics o...
In the present research, the free vibration characteristics of a skew cylindrical panel made of func...
During the past five years, it has been shown that carbon nanotubes act as an exceptional reinforcem...
This research investigates the free vibration of nanocomposite beams and plates reinforced by carbon...
This paper presents an investigation on the free vibration of rectangular nanocomposite plates reinf...
This paper presents the first known vibration characteristics of moderately thick functionally grade...
This paper investigates the linear free vibration of functionally graded (FG) nanocomposite beams re...
This paper investigates the nonlinear free vibration of functionally graded nanocomposite beams rein...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This paper investigates the linear free vibration of nanocomposite beams reinforced by single-walled...
In this paper, vibration of a nonlinear composite beam is analyzed and then an active controller is ...
Functionally graded carbon nanotube-reinforced composite (FG-CNTRC) is a novel nanomaterial; the mec...
This paper investigates the free vibration of nanocomposite beams reinforced by single-walled carbon...
Composite plates are structural elements that are commonly used in many fields, such as civil, aeros...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical panels r...
In this study, based on the three-dimensional theory of elasticity, free vibration characteristics o...
In the present research, the free vibration characteristics of a skew cylindrical panel made of func...
During the past five years, it has been shown that carbon nanotubes act as an exceptional reinforcem...
This research investigates the free vibration of nanocomposite beams and plates reinforced by carbon...
This paper presents an investigation on the free vibration of rectangular nanocomposite plates reinf...
This paper presents the first known vibration characteristics of moderately thick functionally grade...
This paper investigates the linear free vibration of functionally graded (FG) nanocomposite beams re...
This paper investigates the nonlinear free vibration of functionally graded nanocomposite beams rein...
This work analyses the natural frequencies of composite conical panels made of a polymeric matrix re...
This paper investigates the linear free vibration of nanocomposite beams reinforced by single-walled...
In this paper, vibration of a nonlinear composite beam is analyzed and then an active controller is ...
Functionally graded carbon nanotube-reinforced composite (FG-CNTRC) is a novel nanomaterial; the mec...
This paper investigates the free vibration of nanocomposite beams reinforced by single-walled carbon...
Composite plates are structural elements that are commonly used in many fields, such as civil, aeros...
This paper investigates the large amplitude vibration behavior of nanocomposite cylindrical panels r...