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2008 | Vol. 33, No. 4 | 603-608
Tytuł artykułu

Piezoelectric material characterization by acoustic methods

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Two characterization methods of piezoelectric materials based on acoustic measurements are presented. Their main objective is to identify the entire set of electromechanical properties of piezoelectric materials from a single sample. In order to characterize new materials like single-crystals with small dimensions, the first section of the paper presents an identiffication protocol based on the study of the resonance spectra of parallelepipeds. The second characterization method is performed by means of the measurement of the transmission coefficients of plane waves propagating through an immersed plate. It is is suitable for the determination of the properties of bulk piezoelectric ceramics.
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Rocznik
Strony
603-608
Opis fizyczny
Bibliogr. 10 poz., rys., tab.
Twórcy
autor
autor
  • Université François Rabelais de Tours, CNRS FRE 2448, INSERM U930, École Nationale d'Ingénieurs du Val de Loire, rue de la Chocolaterie, BP3410, 41034 Blois, France, emmanuel.leclezio@univ-tours.fr
Bibliografia
  • [1] Publication and proposed revision of ANSI/IEEE Standard 176-1987 on piezoelectricity, IEEE Trans. UFFC, 43, 717–718 (1996).
  • [2] ALGUERO M., ALEMANY C., PARDO L., GONZALEZ A.M., Method for obtaining the full set of linear electric, mechanical and electromechanical coefficients and all related losses of a piezoelectric ceramic, J. Am. Ceram. Soc., 87, 2, 209–215 (2004).
  • [3] DELAUNAY T., LE CLÉZIO E., GUENNOU M., DAMMAK H., PHAM THI M., FEUILLARD G., Full tensorial characterization of PZN-12PT single crystal by resonant ultrasound spectroscopy, IEEE Trans. UFFC, 55, 2, 476–488 (2008).
  • [4] LE CLÉZIO E., SHUVALOV A., Transmission of acoustic waves through piezoelectric plates: Modeling and experiment, Proc. IEEE Ultrason. Symp., 553–556 (2004).
  • [5] PARK S.-E., SHROUT T.R., Characteristics of relaxor-based piezoelectric single crystals for ultrasonic transducers, IEEE Trans. UFFC., 44, 1140–1146 (1997).
  • [6] CAO H., SCHIMDT V.H., ZHANG R., CAO W., LUO H., Elastic, piezoelectric, and dielectric properties of 0.58Pb(Mg1/3Nb2/3)O3-0.42PbTiO3 single crystal, Journal of Applied Physics, 96, 1, 549–554 (2004).
  • [7] SHUVALOV A.L., LE CLÉZIO E., FEUILLARD G., The state-vector formalism and the peano-series solution for modelling guided waves in functionally graded anisotropic piezoelectric plates, International Journal of Engineering Science, 46, 929–947 (2008).
  • [8] ROKHLIN S.I., WANG L., Stable recursive algorithm for elastic wave propagation in layered anisotropic structures: Stiffness matrix method, J. Acoust. Soc. Am., 112, 822–834 (2002).
  • [9] http://www.ferroperm-piezo.com/
  • [10] FORTINEAU J., LE CLÉZIO E., VANDER MEULEN F., FEUILLARD G., Moisture content characterization in composite materials based on ultrasonic transmission measurements, J. Appl. Phys., 101, 114911–1 114911–8 (2007).
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT8-0014-0024
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