Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators

In the design of micro-electromechanical systems (MEMS) such as micro-resonators, one of the major dissipation phenomena to be considered is thermoelastic damping. The performance of such MEMS is directly related to their thermoelastic quality factor which has to be predicted accurately. Moreover, t...

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Main Authors: Séverine LEPAGE, Jean-Claude GOLINVAL
Format: Article
Language:English
Published: IFSA Publishing, S.L. 2007-10-01
Series:Sensors & Transducers
Subjects:
Online Access:http://www.sensorsportal.com/HTML/DIGEST/october_07/P_SI_18.pdf
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spelling doaj-607486503b444a27b129dd5abc34a8422020-11-24T20:57:07ZengIFSA Publishing, S.L.Sensors & Transducers2306-85151726-54792007-10-012Special Issue124130Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators Séverine LEPAGE0Jean-Claude GOLINVAL1University of Liege, Aerospace and Mechanical Engineering Department, LTAS-VISUniversity of Liege, Aerospace and Mechanical Engineering Department, LTAS-VISIn the design of micro-electromechanical systems (MEMS) such as micro-resonators, one of the major dissipation phenomena to be considered is thermoelastic damping. The performance of such MEMS is directly related to their thermoelastic quality factor which has to be predicted accurately. Moreover, the performance of MEMS depends on manufacturing processes which may cause substantial uncertainty in the geometry and in the material properties of the device. The aim of this paper is to provide a framework to account for uncertainties in the finite element analysis. Particularly, the influence of uncertainties on the performance of a micro-beam is studied using the perturbation stochastic finite element method. The developed method is applied on the analysis of the thermoelastic quality factor of a micro-beam whose elastic modulus is considered as random.http://www.sensorsportal.com/HTML/DIGEST/october_07/P_SI_18.pdfStochastic finite element methodThermoelastic dampingMicro-resonatorUncertainty modeling
collection DOAJ
language English
format Article
sources DOAJ
author Séverine LEPAGE
Jean-Claude GOLINVAL
spellingShingle Séverine LEPAGE
Jean-Claude GOLINVAL
Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
Sensors & Transducers
Stochastic finite element method
Thermoelastic damping
Micro-resonator
Uncertainty modeling
author_facet Séverine LEPAGE
Jean-Claude GOLINVAL
author_sort Séverine LEPAGE
title Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
title_short Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
title_full Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
title_fullStr Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
title_full_unstemmed Perturbation Stochastic Finite Element Analysis of Thermoelastic Quality Factor of Micro-Resonators
title_sort perturbation stochastic finite element analysis of thermoelastic quality factor of micro-resonators
publisher IFSA Publishing, S.L.
series Sensors & Transducers
issn 2306-8515
1726-5479
publishDate 2007-10-01
description In the design of micro-electromechanical systems (MEMS) such as micro-resonators, one of the major dissipation phenomena to be considered is thermoelastic damping. The performance of such MEMS is directly related to their thermoelastic quality factor which has to be predicted accurately. Moreover, the performance of MEMS depends on manufacturing processes which may cause substantial uncertainty in the geometry and in the material properties of the device. The aim of this paper is to provide a framework to account for uncertainties in the finite element analysis. Particularly, the influence of uncertainties on the performance of a micro-beam is studied using the perturbation stochastic finite element method. The developed method is applied on the analysis of the thermoelastic quality factor of a micro-beam whose elastic modulus is considered as random.
topic Stochastic finite element method
Thermoelastic damping
Micro-resonator
Uncertainty modeling
url http://www.sensorsportal.com/HTML/DIGEST/october_07/P_SI_18.pdf
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