Size-dependent dynamic instability of cylindrical nanowires incorporating the effects of Casimir attraction and surface energy is presented in this research work. To develop the attractive intermolecular force between the nanowire and its substrate, the proximity force approximation (PFA) for small separations, and the Dirichlet asymptotic approximation for large separations with a cylinder-plate geometry are employed. A nonlinear governing equation of motion for free-standing nanowires – based on the Gurtin-Murdoch model – and a strain gradient elasticity theory are derived. To overcome the complexity of the nonlinear problem in hand, a Garlerkin-based projection procedure for construction of a reduced-order model is implemented as a way o...
A continuum mechanics theory is established for the in-surface buckling of one-dimensional nanomater...
This paper presents an investigation on the dynamic instability of cantilevered nanorods/nanotubes s...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
The Casimir attraction can significantly interfere the physical response of nanoactuators. The inten...
This paper develops the classical strain gradient elasticity theory to investigate the scale-depende...
The presence of van der Waals (vdW) force can lead to mechanical instability in freestanding nano-sc...
Herein, the static and dynamic pull-in instabilities of nanotweezers and nanoswitches fabricated fro...
The present work investigates contributions from surfaces and core nonlinearity to the size-dependen...
AbstractThis paper investigates the impact of surface energy and thermal loading on the static stabi...
This paper studies the size effect in the transverse deformation of nanowires or nanoropes subjected...
AbstractThe continuum modeling of the mechanical behavior of nanowires has recently attracted much a...
The accelerating fields (e. g. centrifugal acceleration and constant acceleration) can change the ph...
Among the intermolecular interactions, the Casimir and van der Waals forces are the most important f...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
A continuum mechanics theory is established for the in-surface buckling of one-dimensional nanomater...
This paper presents an investigation on the dynamic instability of cantilevered nanorods/nanotubes s...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
The Casimir attraction can significantly interfere the physical response of nanoactuators. The inten...
This paper develops the classical strain gradient elasticity theory to investigate the scale-depende...
The presence of van der Waals (vdW) force can lead to mechanical instability in freestanding nano-sc...
Herein, the static and dynamic pull-in instabilities of nanotweezers and nanoswitches fabricated fro...
The present work investigates contributions from surfaces and core nonlinearity to the size-dependen...
AbstractThis paper investigates the impact of surface energy and thermal loading on the static stabi...
This paper studies the size effect in the transverse deformation of nanowires or nanoropes subjected...
AbstractThe continuum modeling of the mechanical behavior of nanowires has recently attracted much a...
The accelerating fields (e. g. centrifugal acceleration and constant acceleration) can change the ph...
Among the intermolecular interactions, the Casimir and van der Waals forces are the most important f...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
A continuum mechanics theory is established for the in-surface buckling of one-dimensional nanomater...
This paper presents an investigation on the dynamic instability of cantilevered nanorods/nanotubes s...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...