Microsystems dynamics

In recent years microelectromechanical systems (MEMS) have emerged as a new technology with enormous application potential. MEMS manufacturing techniques are essentially the same as those used in the semiconductor industry, therefore they can be produced in large quantities at low cost. The added be...

Descripció completa

Guardat en:
Dades bibliogràfiques
Autors principals: Ostasevicius, Vytautas, Dauksevicius, Rolanas (Autor)
Format: Livre numérique
Idioma:Anglais
Publicat: Dordrecht : Springer Netherlands 2011.
Cham : Springer Nature
Col·lecció:Intelligent Systems, Control and Automation: Science and Engineering 44
Accés en línia:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Nota: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Microsystems Dynamics, Texte imprimé, 9789048197002
• Microsystems Dynamics, Texte imprimé, 9789048197026
• Microsystems Dynamics, Texte imprimé, 9789400734104
LEADER 04797nam a22003497a 4500
001 968039
008 110208s2011 xx ||| |||| 00| 0 eng d
009 PPN14989869X
020 |a 9789048197019 
041 0 |a eng 
082 |a 620.5 
100 1 |a Ostasevicius, Vytautas. 
245 1 0 |a Microsystems dynamics   |c by Vytautas Ostasevicius, Rolanas Dauksevicius. 
260 |a Dordrecht :  |b Springer Netherlands. 
260 |a Cham :  |b Springer Nature,  |c 2011. 
490 0 |a Intelligent Systems, Control and Automation: Science and Engineering  |v 44  |x 2213-8994 
500 |a Archives Springer e-books (Licence nationale) 
500 |a Archives Springer e-books (Licence nationale) 
505 0 |a Foreword -- Preface -- Introduction to Microsystems -- Fabrication Technologies of Microsystems -- Overview -- Nickel Surface Micromachining Technology for Fabrication of Microswitches -- UV Lithography for Fabrication of Micromotors -- Common MEMS Actuators -- Parallel Plate Capacitors -- Comb Drives -- Electrostatic Micromotors -- Electrostatic Microswitches -- Theoretical Background of Multiphysical Interactions Common in Microsystems -- Introduction to Coupled-Field Modeling -- Electrostatic Actuation and Pull-in Instability -- Viscous Air Damping -- Vibro-Impact Interactions -- Experimental Testing of Microsystem Dynamics -- Vibration Excitation Methods -- Optical Techniques for Measurement of Vibrations of Microstructures -- Study of Elastic Vibro-Impact Macrosystems and Microsystems -- Overview of Important New Effects of Nonlinear Dynamics in Vibro-Impact -- Macrosystems -- -- Analysis of Coupled-Field Dynamics in Contact-Type Electrostatic Microactuator -- Numerical Modeling and Analysis of Fluidic-Structural Interaction -- Numerical Modeling and Analysis of Electrostatic-Structural Interaction -- Numerical Modeling and Analysis of Vibro-Impact Interaction -- Numerical Analysis of the Micromotor -- Finite Element Modeling of Micromotor -- Modal Analysis -- Micromotor Control -- Analytical Model of a Micromotor -- Basics of Micromotor Geometry -- Torque Analysis -- Micromotor Design Guidelines -- References. 
506 |a Accès en ligne pour les établissements français bénéficiaires des licences nationales 
506 |a Accès soumis à abonnement pour tout autre établissement 
506 |a Conditions particulières de réutilisation pour les bénéficiaires des licences nationales. chttps://www.licencesnationales.fr/springer-nature-ebooks-contrat-licence-ln-2017 
520 |a In recent years microelectromechanical systems (MEMS) have emerged as a new technology with enormous application potential. MEMS manufacturing techniques are essentially the same as those used in the semiconductor industry, therefore they can be produced in large quantities at low cost. The added benefits of lightweight, miniature size and low energy consumption make MEMS commercialization very attractive. Modeling and simulation is an indispensable tool in the process of studying these new dynamic phenomena, development of new microdevices and improvement of the existing designs. MEMS technology is inherently multidisciplinary since operation of microdevices involves interaction of several energy domains of different physical nature, for example, mechanical, fluidic and electric forces. Dynamic behavior of contact-type electrostatic microactuators, such as a microswitches, is determined by nonlinear fluidic-structural, electrostatic-structural and vibro-impact interactions. The latter is particularly important: Therefore it is crucial to develop accurate computational models for numerical analysis of the aforementioned interactions in order to better understand coupled-field effects, study important system dynamic characteristics and thereby formulate guidelines for the development of more reliable microdevices with enhanced performance, reliability and functionality. 
700 1 |a Dauksevicius, Rolanas.  |4 aut 
776 0 |t Microsystems Dynamics  |b Texte imprimé  |z 9789048197002 
776 0 |t Microsystems Dynamics  |b Texte imprimé  |z 9789048197026 
776 0 |t Microsystems Dynamics  |b Texte imprimé  |z 9789400734104 
856 4 |q PDF  |u https://doi.org/10.1007/978-90-481-9701-9  |z Accès sur la plateforme de l'éditeur 
856 4 |u https://revue-sommaire.istex.fr/ark:/67375/8Q1-5WSTZW29-0  |z Accès sur la plateforme Istex 
856 4 |5 452349901:750625139  |u https://ezproxy.univ-orleans.fr/login?url=https://dx.doi.org/10.1007/978-90-481-9701-9  |z Accès Université d'Orléans 
856 4 |5 180339901:75398251X  |u https://ezproxy.insa-cvl.fr/login?qurl=https://dx.doi.org/10.1007/978-90-481-9701-9  |z Accès INSA CVL 
997 |0 968039  |1 Livre numérique  |a Ressource numérique  |b INSA  |b ENSA  |c 0/Bibliothèque numérique/  |c 1/Bibliothèque numérique/Autre ressource numérique/