In this study, the dynamic buckling of the embedded laminated nanocomposite plates is investigated. The plates are reinforced with the single-walled carbon nanotubes (SWCNTs), and the Mori-Tanaka model is applied to obtain the equivalent material properties of them. Based on the sinusoidal shear deformation theory (SSDT), the motion equations are derived using the energy method and Hamilton's principle. The Navier’s method is used in conjunction with the Bolotin's method for obtaining the dynamic instability region (DIR) of the structure. The effects of different parameters such as the volume percentage of SWCNTs, the number and orientation angle of the layers, the elastic medium, and the geometrical parameters of the plates are shown on DI...
none4siThe main purpose of the study is to investigate the vibration behaviors of carbon nanotube (C...
AbstractThis work deals with a study of the vibrational properties of functionally graded nanocompos...
The objective of this innovative research is assessment of dynamic stability for a hybrid nanocompos...
In this paper, buckling behavior of functionally graded carbon nanotube-reinforced composite (FG-CNT...
This research deals with the buckling analysis of nanocomposite polymeric temperature-dependent plat...
Thermo-mechanical dynamic characteristics of SWCNT-Reinforced Composite Plates are studied in this p...
This article presents a dynamic stability analysis of functionally graded nanocomposite beams reinfo...
A buckling analysis of temperature-dependent embedded plates reinforced by single-walled carbon nano...
This study presents a semi-analytical formulation for the nonlinear vibration and dynamic instabilit...
This paper presents a nonlinear numerical model, which is based on the modified couple stress theory...
The main purpose of the study is to investigate the vibration behaviors of carbon nanotube (CNT) pat...
This paper aims to investigate the effect of the Winkler-Pasternak elastic foundation on the natural...
The development of nanofibers, such as Carbon Nanotubes (CNTs), captured the interest of many resear...
The present study deals with the buckling analysis and vibration behavior of the nanocomposite spher...
The vibration behavior of functionally graded carbon nanotube (CNT)-reinforced composite (FG-CNTRC) ...
none4siThe main purpose of the study is to investigate the vibration behaviors of carbon nanotube (C...
AbstractThis work deals with a study of the vibrational properties of functionally graded nanocompos...
The objective of this innovative research is assessment of dynamic stability for a hybrid nanocompos...
In this paper, buckling behavior of functionally graded carbon nanotube-reinforced composite (FG-CNT...
This research deals with the buckling analysis of nanocomposite polymeric temperature-dependent plat...
Thermo-mechanical dynamic characteristics of SWCNT-Reinforced Composite Plates are studied in this p...
This article presents a dynamic stability analysis of functionally graded nanocomposite beams reinfo...
A buckling analysis of temperature-dependent embedded plates reinforced by single-walled carbon nano...
This study presents a semi-analytical formulation for the nonlinear vibration and dynamic instabilit...
This paper presents a nonlinear numerical model, which is based on the modified couple stress theory...
The main purpose of the study is to investigate the vibration behaviors of carbon nanotube (CNT) pat...
This paper aims to investigate the effect of the Winkler-Pasternak elastic foundation on the natural...
The development of nanofibers, such as Carbon Nanotubes (CNTs), captured the interest of many resear...
The present study deals with the buckling analysis and vibration behavior of the nanocomposite spher...
The vibration behavior of functionally graded carbon nanotube (CNT)-reinforced composite (FG-CNTRC) ...
none4siThe main purpose of the study is to investigate the vibration behaviors of carbon nanotube (C...
AbstractThis work deals with a study of the vibrational properties of functionally graded nanocompos...
The objective of this innovative research is assessment of dynamic stability for a hybrid nanocompos...