• DocumentCode
    1034283
  • Title

    Thickness resonances dispersion characteristics of a lossy piezoceramic plate with electrodes of arbitrary conductivity

  • Author

    Mezheritsky, Alex A. ; Mezheritsky, Alex V.

  • Author_Institution
    Tallan Inc., New York
  • Volume
    54
  • Issue
    12
  • fYear
    2007
  • fDate
    12/1/2007 12:00:00 AM
  • Firstpage
    2662
  • Lastpage
    2677
  • Abstract
    A theoretical description of the dissipative phenomena in the wave dispersion related to the "energy-trap" effect in a thickness-vibrating, infinite thickness-polarized piezoceramic plate with resistive electrodes is presented. The three-dimensional (3-D) equations of linear piezoelectricity were used to obtain symmetric and antisymmetric solutions of plane harmonic waves and investigate the eigen-modes of thickness longitudinal (TL) up to third harmonic and shear (TSh) up to ninth harmonic vibrations of odd-and even-orders. The effects of internal and electrode energy dissipation parameters on the wave propagation under regimes ranging from a short-circuit (sc) condition through RC-type relaxation dispersion to an open-circuit (oc) condition are examined in detail for PZT piezo-ceramics with three characteristic TL-mode energy-trap figure-of-merit c dot33 D/c dot44 E values - less, near equal and higher 4 - when the second harmonic spurious TSh resonance lies below, inside, and above the fundamental TL resonance-antiresonance frequency interval. Calculated complex lateral wave number dispersion dependences on frequency and electrode resistance are found to follow the universal scaling formula similar to those for dielectrics characterization. Formally represented as a Cole-Cole diagram, the dispersion branches basically exhibit Debye-like and modified Davidson-Cole dependences. Varying the dissipation parameters of internal loss and electrode conductivity, the interaction of different branches was demonstrated by analytical and numerical analysis. For the purposes of dispersion characterization of at least any thickness resonance, the following theorem was stated: the ratio of two characteristic determinants, specifically constructed from the oc and sc boundary conditions, in the limit of zero lateral wave number, is equal to the basic elementary-mode normalized admittance. As was found based on the theorem, the dispersio- - n near the basic and nonbasic TL and TSh resonances reveal some simple representations related to the respective elementary admittance and showing the connection between the propagation and excitation problems in a continuous piezoactive medium.
  • Keywords
    dielectric polarisation; electrodes; piezoelectric materials; piezoelectricity; plates (structures); Cole-Cole diagram; Davidson-Cole dependency; analytical analysis; arbitrary conductivity; dielectrics characterization; dissipative phenomena; eigen-modes; electrode conductivity; electrode energy dissipation parameters; elementary-mode normalized admittance; energy-trap effect; infinite thickness-polarisation; lossy piezoceramic plate; numerical analysis; piezoelectricity; plane harmonic waves; relaxation dispersion; resistive electrodes; resonance dispersion characteristics; sc boundary conditions; thickness longitudinal; universal scaling formula; wave dispersion; wave propagation; Admittance; Conductivity; Dispersion; Electrodes; Energy dissipation; Equations; Piezoelectric materials; Piezoelectricity; Resonance; Resonant frequency; Acoustics; Computer Simulation; Computer-Aided Design; Electric Conductivity; Electrodes; Equipment Design; Equipment Failure Analysis; Materials Testing; Membranes, Artificial; Models, Chemical;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/TUFFC.2007.595
  • Filename
    4430059