Simulations of single-wall carbon nanotube(SWCNT)s having a different chiral vector under axial compression were carried out based on molecular dynamics to investigate the effect of the helicity on the buckling behavior. Calculation was performed at room temperature for (8,8) armchair, (14,0) zigzag and (6,10) chiral single-wall carbon nanotubes. The Tersoff potential was used as the interatomic potential since it describes the C-C bonds in carbon nanotubes reliably. A conjugate gradient (CG) method was used to obtain the equilibrium configuration. Compressive force was applied at the top of a nanotube by moving the top-most atoms downward with the constant velocity of 10m/s. The buckling load, the critical strain, and the Young’s modulus w...
We report on non-equilibrium molecular dynamics calculations of chiral single-wall carbon nanotubes ...
We investigate the buckling behaviors of short multi-walled carbon nanotubes (MWCNTs) under axial co...
Presented herein is an investigation into the stretching and fracture behavior of single-walled carb...
In this paper, molecular dynamics simulations (MDS) are performed on single-walled carbon nanotubes ...
In this paper, molecular dynamics simulations (MDS) are performed on single-walled carbon nanotubes ...
Using molecular dynamics simulation, we predict that under fixed-end boundary condition, for an unsy...
AbstractThe effects of chirality and boundary conditions on the elastic properties and buckling beha...
Using molecular dynamics simulation, we predict that under fixed-end boundary condition, for an unsy...
The buckling characteristics of several curved forms of single walled carbon nanotubes (SWCNTs) were...
Molecular dynamics simulation is performed on the buckling behavior of single and multi-walled carbo...
Molecular dynamic simulation method has been employed to consider the critical buckling force, press...
In this paper, an equivalent thick cylindrical shell model is proposed for the buckling analysis of ...
The effect of chirality on the structural stability of single-wall carbon nanotubes have been invest...
In this study, numerous armchair and zigzag single-walled carbon nanotubes (SWCNTs) were simulated b...
This paper investigates the effects of length's variations on Young's modulus, compressive elastic m...
We report on non-equilibrium molecular dynamics calculations of chiral single-wall carbon nanotubes ...
We investigate the buckling behaviors of short multi-walled carbon nanotubes (MWCNTs) under axial co...
Presented herein is an investigation into the stretching and fracture behavior of single-walled carb...
In this paper, molecular dynamics simulations (MDS) are performed on single-walled carbon nanotubes ...
In this paper, molecular dynamics simulations (MDS) are performed on single-walled carbon nanotubes ...
Using molecular dynamics simulation, we predict that under fixed-end boundary condition, for an unsy...
AbstractThe effects of chirality and boundary conditions on the elastic properties and buckling beha...
Using molecular dynamics simulation, we predict that under fixed-end boundary condition, for an unsy...
The buckling characteristics of several curved forms of single walled carbon nanotubes (SWCNTs) were...
Molecular dynamics simulation is performed on the buckling behavior of single and multi-walled carbo...
Molecular dynamic simulation method has been employed to consider the critical buckling force, press...
In this paper, an equivalent thick cylindrical shell model is proposed for the buckling analysis of ...
The effect of chirality on the structural stability of single-wall carbon nanotubes have been invest...
In this study, numerous armchair and zigzag single-walled carbon nanotubes (SWCNTs) were simulated b...
This paper investigates the effects of length's variations on Young's modulus, compressive elastic m...
We report on non-equilibrium molecular dynamics calculations of chiral single-wall carbon nanotubes ...
We investigate the buckling behaviors of short multi-walled carbon nanotubes (MWCNTs) under axial co...
Presented herein is an investigation into the stretching and fracture behavior of single-walled carb...