• Title of article

    Scale-Dependent Dynamic Behavior of Nanowire-Based Sensor in Accelerating Field

  • Author/Authors

    Yekrangi ، Alireza - Islamic Azad University, Ayatollah Amoli Branch , Yaghobi ، Mojtaba - Islamic Azad University, Ayatollah Amoli Branch , Riazian ، Mehran - Islamic Azad University, Tonekabon Branch , Koochi ، Ali - University of Torbat Heydarieh

  • Pages
    12
  • From page
    486
  • To page
    497
  • Abstract
    The accelerating fields (e. g. centrifugal acceleration and constant acceleration) can change the physical performance of nano-sensors significantly. Herein, a new size-dependent model is developed to investigate the scale-dependent dynamic behavior of nanowire-fabricated sensor operated in an accelerating field. The scaledependent equation of motion is developed by employing a consolidation of the strain gradient elasticity (SGE) and the Gurtin–Murdoch theory (GMT). A semi-analytical solution is extracted for calculating the stability parameters. Effects of different phenomena including centrifugal force, microstructure dependency, surface layer, length-scaleparameter, dispersion forces, squeezed film damping on the dynamic stability parameters are demonstrated.
  • Keywords
    Nanowire , Accelerating field , Strain gradient elasticity , Dynamic instability , Surface energies
  • Journal title
    Journal of Applied and Computational Mechanics
  • Serial Year
    2019
  • Journal title
    Journal of Applied and Computational Mechanics
  • Record number

    2478055