| نویسندگان | علی قربانپور,محمد مسیبی,مجید جمالی,رضا کلاه چی |
| همایش | The 23rd Annual International Conference on Mechanical Engineering-ISME2015 |
| تاریخ برگزاری همایش | 2015-5-12 |
| محل برگزاری همایش | تهران |
| نوع ارائه | سخنرانی |
| سطح همایش | بین المللی |
چکیده مقاله
Buckling analysis of embedded double-walled carbon
nanotubes (DWCNTs) conveying fluid under 2D
magnetic fields is investigated in this study based on
sinusoidal shear deformation beam theory (SSDBT)
along with strain gradient theory, are used for modeling
of DWCNTs. The system is surrounded by elastic
medium which is simulated as visco-Pasternak
foundation. Gurtin–Murdoch elasticity theory is applied
for considering the effects of surface stress. Motion
equations are calculated via Hamilton's principle. The
differential quadrature method (DQM) is applied for
obtaining the critical load buckling of system. The
detailed parametric study is conducted, focusing on the
combined effects of the nonlocal parameter, magnetic
field, visco-Pasternak foundation and surface stress
effect on the critical buckling load of DWCNTs. The
results depict that the effect of magnetic field on critical
buckling load of DWCNTs is extremely significant.