A nonlocal strain gradient elasticity approach is proposed for the mechanical behaviour of fluid-conveying nanotubes; a nonlinear analysis, incorporating stretching, is conducted for a model based on both a nonlocal theory along with a strain gradient one. A clamped–clamped nanotube conveying fluid, as a conservative gyroscopic nanosystem, is considered and the motion energy and size-dependent potential energy are developed via use of constitutive and strain–displacement relations. An energy minimisation is conducted via Hamilton's method for an oscillating nanotube subject to external forces. This gives the nonlinear equation of the motion which is reduced to a high DOF system via Galerkin's technique. As many nanodevices operate near reso...
A coupled continuum model incorporating size influences and geometric nonlinearity is presented for ...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
The objective of this paper is to develop a size-dependent nonlinear model of beams for fluid-convey...
A size-dependent nonlinear nonlocal strain gradient model for nanoscale tubes is proposed in this in...
A nonlinear viscoelastic model is developed for the dynamics of nanotubes conveying fluid. The influ...
Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are modeled and nu...
Abstract. Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are mode...
An advanced nonlinear continuum model is presented to analyse the super and subcritical nonlinear be...
The coupled nonlinear mechanical behavior of nonlocal strain gradient nanotubes subject to distribut...
In the current analysis, an attempt is made to develop a nonlinear size-dependent fluid-structure in...
In the present article, an effort is made to analyse the coupled global dynamics of nanoscale fluid-...
In this article, a chaos analysis is performed for the nonlinear coupled dynamics of nanotubes conve...
In this article, the nonlinear parametric response of viscoelastic nanotubes conveying pulsatile flo...
A scale-dependent model of nanobeams with large deformations is developed to investigate the influen...
A coupled continuum model incorporating size influences and geometric nonlinearity is presented for ...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
The objective of this paper is to develop a size-dependent nonlinear model of beams for fluid-convey...
A size-dependent nonlinear nonlocal strain gradient model for nanoscale tubes is proposed in this in...
A nonlinear viscoelastic model is developed for the dynamics of nanotubes conveying fluid. The influ...
Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are modeled and nu...
Abstract. Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are mode...
An advanced nonlinear continuum model is presented to analyse the super and subcritical nonlinear be...
The coupled nonlinear mechanical behavior of nonlocal strain gradient nanotubes subject to distribut...
In the current analysis, an attempt is made to develop a nonlinear size-dependent fluid-structure in...
In the present article, an effort is made to analyse the coupled global dynamics of nanoscale fluid-...
In this article, a chaos analysis is performed for the nonlinear coupled dynamics of nanotubes conve...
In this article, the nonlinear parametric response of viscoelastic nanotubes conveying pulsatile flo...
A scale-dependent model of nanobeams with large deformations is developed to investigate the influen...
A coupled continuum model incorporating size influences and geometric nonlinearity is presented for ...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...