In this article, for the first time, a coupled nonlinear model incorporating scale influences is presented to simultaneously investigate the influences of viscoelasticity and geometrical imperfections on the nonlocal coupled mechanics of carbon nanotubes; large deformations, stress nonlocality and strain gradients are captured in the model. The Kelvin-Voigt model is also applied in order to ascertain the viscoelasticity effects on the mechanics of the initially imperfect nanoscale system. The modified coupled equations of motion are then derived via the Hamilton principle. A solution approach for the derived coupled equations is finally developed applying a decomposition-based procedure in conjunction with a continuation-based scheme. The s...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
In the present work, thermoelastic damping of single-walled carbon nanotube is studied based on nonl...
Although small-scale effect or thermal stress significantly impact the mechanical properties of nano...
In this article, for the first time, a coupled nonlinear model incorporating scale influences is pre...
The aim of the present study is to comprehensively analyse scale effects on the mechanical character...
In this paper, a scale-dependent coupled nonlinear continuum-based model is developed for the mechan...
This paper is devoted to the theoretical study of the dynamic response of non-cylindrical curved vis...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
In this article, the nonlinear parametric response of viscoelastic nanotubes conveying pulsatile flo...
The present works aims at modeling a viscoelastic nanobeam with simple boundary conditions at the tw...
International audienceCommonly isolated carbon nanotubes in suspension have been modelled as a perfe...
The present study develops a new size-dependent nonlinear model for the analysis of the behaviour of...
The coupled nonlinear mechanical behavior of nonlocal strain gradient nanotubes subject to distribut...
This paper examines the nonlinear size-dependent behaviour of single-walled carbon nanotubes (SWCNTs...
A scale-dependent model of nanobeams with large deformations is developed to investigate the influen...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
In the present work, thermoelastic damping of single-walled carbon nanotube is studied based on nonl...
Although small-scale effect or thermal stress significantly impact the mechanical properties of nano...
In this article, for the first time, a coupled nonlinear model incorporating scale influences is pre...
The aim of the present study is to comprehensively analyse scale effects on the mechanical character...
In this paper, a scale-dependent coupled nonlinear continuum-based model is developed for the mechan...
This paper is devoted to the theoretical study of the dynamic response of non-cylindrical curved vis...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
In this article, the nonlinear parametric response of viscoelastic nanotubes conveying pulsatile flo...
The present works aims at modeling a viscoelastic nanobeam with simple boundary conditions at the tw...
International audienceCommonly isolated carbon nanotubes in suspension have been modelled as a perfe...
The present study develops a new size-dependent nonlinear model for the analysis of the behaviour of...
The coupled nonlinear mechanical behavior of nonlocal strain gradient nanotubes subject to distribut...
This paper examines the nonlinear size-dependent behaviour of single-walled carbon nanotubes (SWCNTs...
A scale-dependent model of nanobeams with large deformations is developed to investigate the influen...
This article deals with developing a coupled scale-dependent model to explore the nonlinear bifurcat...
In the present work, thermoelastic damping of single-walled carbon nanotube is studied based on nonl...
Although small-scale effect or thermal stress significantly impact the mechanical properties of nano...