• Title of article

    Electromechanical Performance of NEMS Actuator Fabricated from Nanowire under quantum vacuum fluctuations using GDQ and MVIM

  • Author/Authors

    Abadian ، Fateme - Islamic Azad University, Isfahan (Khorasgan) Branch , Soroush ، Rahman - Islamic Azad University, Lahijan Branch , Yekrangi ، Alireza - Islamic Azad University, Ramsar Branch

  • Pages
    10
  • From page
    125
  • To page
    134
  • Abstract
    The Casimir attraction can significantly interfere the physical response of nanoactuators. The intensity of the Casimir force depends on the geometries of interacting bodies. The present paper is dedicated to model the influence of the Casimir attraction on the electrostatic stability of nanoactuators made of cylindrical conductive nanowire/nanotube. An asymptotic solution, based on pathintegral approach, is employed to consider the Casimir force. The continuum theory is employed to derive the constitutive equation of the actuator. The governing nonlinear equations are solved by three different approaches. Various perspectives of the issue including comparison with the van der Waals (vdW) force regime, the variation of instability parameters and effect of geometry are addressed.
  • Keywords
    Casimir attraction , Continuum model , Electromechanical stability , Generalized Differential Quadrature (GDQ) , Modified Variation Iteration Method (MVIM).
  • Journal title
    Journal of Applied and Computational Mechanics
  • Serial Year
    2017
  • Journal title
    Journal of Applied and Computational Mechanics
  • Record number

    2477946