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- W42461640 abstract "Nanomechanical switches are fundamental building blocks for the design of NEMS applications, such as nanotweezers and some other nanoscale actuators. However, there is an intrinsic instability, known as the pull-in phenomenon. In practice one must discriminate between the static and the dynamic pull-in aspects. In spite of static pull-in, dynamic pull-in takes into account the inertial and damping effects and the additional effect of an external acceleration. At present, few works have been carried out by neglecting van der waals and Casimir forces in dynamic analysis. At this study a theoretical analysis focusing on the effect of these forces on the pull-in parameters and dynamic behavior of electrostatically actuated nanobeam have been investigated. A large deflection model and first order fringing field correction on electrostatic force are considered. The method of Galerkin decomposition is employed to approximate the system equations by a reduced order model composed of a finite number of discrete modal equations. Also a perturbation method used to predict dynamic behavior of nanobeams that was in a good agreement with results of Runge-Kutta method." @default.
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- W42461640 date "2010-02-20" @default.
- W42461640 modified "2023-09-23" @default.
- W42461640 title "A large deflection model for the dynamic pull-in analysis of electrostatically actuated nanobeams in presence of intermolecular surface forces" @default.
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