Abstract
On the basis of a theoretical study, this research incorporates an eccentricity into a system of compressed double-walled carbon nanotubes (DWCNTs). In order to formulate the stability equations, a kinematic displacement with reference to the classical beam hypothesis is utilized. Furthermore, the influence of nanoscale size is taken into account with regard to the nonlocal approach of strain gradient and the van der Waals interaction for both inner and outer tubes is also considered based on the Lennard-Jones model. Galerkin decomposition technique is employed to numerically deal with the governing equations. It is evidently demonstrated that the geometrical eccentricity remarkably affects the stability threshold and its impact is to increase the static stability of DWCNTs.
Citations
-
3 2
CrossRef
-
0
Web of Science
-
4 1
Scopus
Authors (3)
Cite as
Full text
- Publication version
- Accepted or Published Version
- License
- open in new tab
Keywords
Details
- Category:
- Articles
- Type:
- artykuły w czasopismach
- Published in:
-
ACTA MECHANICA
no. 231,
pages 5007 - 5020,
ISSN: 0001-5970 - Language:
- English
- Publication year:
- 2020
- Bibliographic description:
- Malikan M., Eremeev V., Sedighi H. M.: Buckling analysis of a non-concentric double-walled carbon nanotube// ACTA MECHANICA -Vol. 231,iss. 12 (2020), s.5007-5020
- DOI:
- Digital Object Identifier (open in new tab) 10.1007/s00707-020-02784-7
- Verified by:
- Gdańsk University of Technology
seen 160 times