The influence of dispersion forces on the size-dependent pull-in instability of general cantilever nano-beams containing geometrical non-linearity

被引:25
作者
SoltanRezaee, Masoud [1 ]
Farrokhabadi, Amin [1 ]
Ghazavi, Mohammad Reza [1 ]
机构
[1] Tarbiat Modares Univ, Dept Mech Engn, Tehran, Iran
关键词
General nano-switch; Modified couple stress theory; Surface effect; Modified boundary conditions; Casimir; COUPLE STRESS THEORY; VAN-DER-WAALS; SURFACE-ENERGY; ELECTROSTATIC ACTUATORS; CASIMIR FORCE; BEHAVIOR; MICRO; MODEL; VIBRATION; PLATE;
D O I
10.1016/j.ijmecsci.2016.10.010
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
While, the effects of ground electrode architecture on the vibration response and instability of nano-switches have considered in a few studies, no attention has been paid to study the dispersion effects in these general nano-structures. Herein, the static and dynamic pull-in instability of a general beam-type nano-electromechanical system in the presence of quantum vacuum fluctuation (Casimir), intermolecular (van der Waals) and piecewise electrostatic attractions are investigated. To this aim, the impacts of size-dependent, fringing field, surface elasticity, residual surface stress, the geometrically nonlinear deformation as well as the location/length of the actuated substrate plate are also considered. The nonlinear governing equations of nano-cantilevers are derived using Hamilton's principle. After validation of the results by previous available numerical results, the pull-in voltages and fundamental natural frequencies of the actuated nano-beam are achieved numerically using the step-by-step linearization method. It is found that the fundamental natural frequency is enhanced significantly by increasing the surface elasticity, residual surface stress and length scale.
引用
收藏
页码:114 / 124
页数:11
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