• DocumentCode
    1761637
  • Title

    An Improved Method for the Mechanical Behavior Analysis of Electrostatically Actuated Microplates Under Uniform Hydrostatic Pressure

  • Author

    Zhikang Li ; Libo Zhao ; Zhuangde Jiang ; Zhiying Ye ; Yulong Zhao

  • Author_Institution
    State Key Lab. for Manuf. Syst. Eng., Xi´an Jiaotong Univ., Xi´an, China
  • Volume
    24
  • Issue
    2
  • fYear
    2015
  • fDate
    42095
  • Firstpage
    474
  • Lastpage
    485
  • Abstract
    Microplates are essential components of the most electrostatically actuated microdevices. Their mechanical behavior is influenced not only by electrostatic force, but by hydrostatic pressure of the environment. This paper presents an improved reduced-order model for an electrostatically actuated microplate under uniform hydrostatic pressure with a novel method for treating the electrostatic force. The model was developed using the Galerkin method and turns the partial-differential equation governing the plate into an ordinary equation system. Using an axisymmetric deflection function and the first-order Taylor series expansion of the electrostatic force, explicit expressions for the deflection and pull-in voltage of the microplate under the electrostatic force alone, and under both electrostatic force and hydrostatic pressure, were derived. The expressions with only the electrostatic force considered can predict the pull-in voltage with a higher accuracy and the deflection within a large range (from the undeformed state to the pull-in position) compared with literature. The expressions for both types of loadings show a better prediction accuracy when the pressure changes in the lower pressure range. The derived expressions are applicable to the electrostatically actuated configurations where the ratio of the plate diameter to its thickness varies from 100 to 40, and the electrode distance is smaller than or equal to the thickness. These theoretical analyses were validated with finite element method simulations and previous literature.
  • Keywords
    Galerkin method; electrostatic actuators; electrostatics; finite element analysis; partial differential equations; series (mathematics); Galerkin method; axisymmetric deflection function; electrostatic force; electrostatically actuated microplates; finite element method; first-order Taylor series expansion; hydrostatic pressure; partial-differential equation; uniform hydrostatic pressure; Accuracy; Capacitance; Electrostatics; Equations; Force; Mathematical model; Reduced order systems; Capacitance variation; electrostatic force; electrostatically actuated microplate; pull-in voltage; static deflection; uniform hydrostatic pressure; uniform hydrostatic pressure.;
  • fLanguage
    English
  • Journal_Title
    Microelectromechanical Systems, Journal of
  • Publisher
    ieee
  • ISSN
    1057-7157
  • Type

    jour

  • DOI
    10.1109/JMEMS.2014.2333371
  • Filename
    6857321