مشروع البحث:
Bouncing Dynamics of a Class of MEM/NEM Switching Systems

dc.contributor.advisorDr. S. F. Asokanthan
dc.date.accessioned2025-12-02T07:23:18Z
dc.date.available2025-12-02T07:23:18Z
dc.descriptionFor a MEM switch, improvement of bouncing behavior has been investigated using harmonic dither in the actuation voltage of an electrostatically actuated switch or using harmonic dither in the secondary piezoelectric actuator voltage. Improvements have been achieved in both types of switches at specific frequency ranges. Uncertainty quantification of parameters that affect the bouncing is also performed since MEM switches are prone to uncertainties during the fabrication. Measure of performance in terms of second order statistics is predicted, particularly for the beam as well as beam tip parameters and the influence of uncertainty in parameters on the system performance has been quantified.
dc.description.abstractThe aim of the present research is to understand the bouncing dynamic behavior of NEM/MEM switches in order to improve the switch performance and reliability. It is well known that the bouncing can dramatically degrade the switch performance and life; hence, in the present study, bouncing dynamics of a cantilever-based NME/MEM switch has been studied in detail. To this end, a model of a MEM switch that incorporates electrostatic force, squeeze film air damping force as well as asperity-based contact force has been proposed for an electrostatically actuated switch. An actuation force due to piezoelectric effects is further included in an alternative micro-switch model of combined actuation for the purposes of bounce mitigation. For a NEM switch, an asperity-based contact model along with repulsive van der Waals force are incorporated in a nano-switch to capture the contact dynamics. Intermolecular forces, surface effects, and gas rarefication effects are also included in the NEM switch model. Further, an intermolecular force, specifically the Casimir force,
dc.identifier810
dc.identifier.urihttps://dspace.academy.edu.ly/handle/123456789/1833
dc.subjectBouncing Dynamics
dc.titleBouncing Dynamics of a Class of MEM/NEM Switching Systems
dspace.entity.typeProject
project.endDate2019
project.funder.nameهندسة الميكانيكية
project.investigatorمحمد عبد الجواد القدافي بوقناش
project.startDate2018
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