| نویسندگان | علی قربانپور-سعید امیر |
| تاریخ انتشار | 2015-3-01 |
| رتبه نشریه | علمی - پژوهشی |
| نمایه نشریه | SCOPUS ,ISC ,SID |
چکیده مقاله
In the present study, nonlinear vibration of
coupled carbon nanotubes (CNTs) in presence
of surface effect is investigated based on nonlocal Euler-Bernoulli beam (EBB) theory.
CNTs are embedded in a visco-elastic medium
and placed in the uniform longitudinal
magnetic field. Using von Kármán geometric
nonlinearity and Hamilton’s principle, the
nonlinear higher order governing equations are
derived. The differen
tial quadrature (DQ)
method is applied to obtain the nonlocal fr
equency of coupled visco-CNTs system. The
effects of various parameters such as the
longitudinal magnetic field, visco-Pasternak
foundation, Knudsen number, surface effect,
aspect ratio and velocity of conveying
viscous are specified. It is shown that the l
ongitudinal magnetic field is responsible for an
up shift in the frequency and an improvement of
the instability of coupled system. Results
also reveal that the surface effect and internal conveying fluid plays an important role in
the instability of nano coupled system. Also, it is found that trend of figures have good
agreement with previous researches. It is
hoped that the nonlinear results of this work
could be used in design and manufacturing of nano/micro mechanical system in advanced
nanomechanics applications where in this
study the magnetic fiel
d is a controller
parameter.