Location

University of Nevada, Las Vegas

Start Date

16-4-2011 10:00 AM

End Date

16-4-2011 11:30 AM

Description

Using molecular dynamics simulations, we study axial compressive behavior of single-walled carbon nanotubes (SWCNTs) with a wide range of aspect ratios (length to diameter ratio). It is shown that the difference in aspect ratio leads to distinct buckling modes in SWCNTs. Small-aspect-ratio SWCNTs primarily exhibit shell buckling; they switch to column buckling mode with increasing aspect ratio. Further compression of the already column buckled large-aspect-ratio SWCNTs results in a shell buckling. This shell buckling mode is distinct from that of small-aspect-ratio SWCNTs in that it originates from the column buckling induced bending deformation.

Keywords

Buckling (Mechanics); Deformations (Mechanics); Nanotubes

Disciplines

Engineering | Engineering Physics | Physics

Language

English

Comments

Research supported by DOE grant DE-FC52-06NA26274.


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Apr 16th, 10:00 AM Apr 16th, 11:30 AM

Aspect ratio dependent buckling mode transition in single-walled carbon nanotubes under compression

University of Nevada, Las Vegas

Using molecular dynamics simulations, we study axial compressive behavior of single-walled carbon nanotubes (SWCNTs) with a wide range of aspect ratios (length to diameter ratio). It is shown that the difference in aspect ratio leads to distinct buckling modes in SWCNTs. Small-aspect-ratio SWCNTs primarily exhibit shell buckling; they switch to column buckling mode with increasing aspect ratio. Further compression of the already column buckled large-aspect-ratio SWCNTs results in a shell buckling. This shell buckling mode is distinct from that of small-aspect-ratio SWCNTs in that it originates from the column buckling induced bending deformation.