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Relations between losses in piezoelectric ceramic and the magnitude of its vibration level

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the paper the method of the mechanical and electrical loss measurements using a piezoelectric transformer has been applied to determine the relations between the losses and the magnitude of the vibration velocity, strain and stress. The measurements and calculations have been realized for the soft and hard PZT-type ceramics. Good accordance of the obtained results with the results obtained by the other authors, applying different measurement methods, proves the usability of the method of loss measurements proposed by the author.
Słowa kluczowe
Rocznik
Strony
235--249
Opis fizyczny
Bibliogr. 28 poz., tab., wykr.
Twórcy
autor
  • Polish Academy of Sciences Institute of Fundamental Technological Research
Bibliografia
  • [1] D.A. Berlincourt, D.R. Curran and H. Jaffe, Piezoelectric and piezomagnetic materials, Physical Acoustics, Vol. IA, W.P. Mason [Ed.], Academic Press, New York 1964, Ch. 3.
  • [2] C.W. Bert and V. Birman, Effects of stress and electric field on the coefficients of piezoelectric materials: one-dimensional formulation, Mechanics Res. Commun., 25, 2, 165-169 (1998).
  • [3] W.G. Cady, Piezoelectricity, Mc Graw Hill, New York 1946, Ch. V, XIII and XV.
  • [4] D. Damjanovic and D.V. Taylor, Contributions to the nonlinear dielectric and piezoelectric response of ferroelectric thin films and ceramics, Ferroelectrics, 221, 137-146 (1999).
  • [5] G.H. Haertling, Ferroelectric ceramics, J. Am. Ceram. Soc., 82, 4, 797-818 (1999).
  • [6] D.A. Hall, Rayleigh behaviour and the threshold field in ferroelectric ceramics, Ferroelectrics, 223, 319-328 (1999).
  • [7] IRE Standards on piezoelectric crystals: Measurement of piezoelectric ceramics, Proc. IRE, 49, 7, 1161-1169 (1961).
  • [8] K. Ishii, N. Akimoto, S. Tashiro and H. Igarashi, Analysis of nonlinear phenomena in piezoelectric ceramics under high-power vibration, J. Ceram. Soc. Jpn., 106, 6, 555-558 (1998).
  • [9] M. Kamlah and C. Tsakmakis, Phenomenological modeling of the non-linear electromechanical coupling in ferroelectrics, Int. J. Solids Struct., 36, 669-695 (1999).
  • [10] W.Ł. Karłasz, Influence of an electric driving field on energy dissipation in piezoceramic res onators [in Russian], Rassiejanie energii pri kolebaniach mechaniczeskich sistem, G.S. Pisarenko [Ed.], Naukova Dumka, Kiev 1980, 344-348.
  • [11] W.Ł. Karłasz, Determination of piezoceramic parameters using piezotransformer sensor [in Russian], Tiepłowyje napria§enia w elementach konstrukcij, 20, Naukova Dumka, Kiev 1980, 110-112.
  • [12] B.A. Kudriawcew, W.Z. Parton and N.A. Senik, Mechanical models of piezoelectrics [in Russian], Itogi Nauki i Techniki, Ser.: Mechanika deformirujemogo tieła, 17, WINITI, Moskwa 1984, 3-63.
  • [13] V.D. Kugel and L.E. Cross, Behavior of soft piezoelectric ceramics under high sinusoidal electric fields, J. Appl. Phys., 84, 5, 2815-2830 (1998).
  • [14] M. Kummel, S. Goldschmidt and J. Wallaschek, Theoretical and experimental studies of a piezoelectric ultrasonic linear motor with respect to damping and nonlinear material behaviour, Ultrasonics, 36, 1-5, 103-109 (1998).
  • [15] X. Li, W. Jiang and Y. Shui, Coupled mode theory for nonlinear piezoelectric plate vibrations, IEEE Trans. Ultrason. Ferroel. Freq. Contr., 45, 3, 800-805 (1998).
  • [16] T. Michelitsch and W.S. Kreher, A simple model for the nonlinear material behavior of ferroelectrics, Acta Mater., 46, 14, 5085-5094 (1998).
  • [17] V. Mueller and Q.M. Zhang, Threshold of irreversible domain wall motion in soft PZT¯piezoceramic, Ferroelectrics, 206-207, 113-122 (1998).
  • [18] G.G. Pisarenko, Strength of piezoceramic [in Russian], Naukova Dumka, Kiev 1987, Ch. III.2.
  • [19] D.L. Rastorguyev and N.N. Andreyev, Piezoelectric transformer technique for testing of flexible piezoelectric materials, Acustica, 82, suppl. 1, 179 (1996).
  • [20] Ł.G. Rozin, S.O. Kramarow and W.P. Sawin, On the destruction of piezoceramic under high frequency loading [in Russian], Procznost materiałow i elementow konstrukcij pri zwukowych i ultrazwukowych czastotach nagrużenia, Naukova Dumka, Kiev 1986, 180-184.
  • [21] K. Sakurai, T. Nakazawa, S. Shindou, K. Ohnishi and Y. Tomikawa, Experimental investigation of a piezoelectric ceramic transformer using radial vibration of disks combined with a coupling element, Jpn. J. Appl. Phys., Part 1, 37, 5B, 2896-2900 (1998).
  • [22] Y. Sasaki, S. Takahashi and S. Hirose, Relationship between mechanical loss and phases of physical constants in lead-zirconate-titanate ceramics, Jpn. J. Appl. Phys., Part 1, 36, 9B, 6058-6061 (1997).
  • [23] Z. Surowiak, Physical foundations of the poling process of electroacoustic piezoceramic transducers [in Polish], Akustyka, Akustooptyka, Optoelektronika, Politechnika Śląska, Gliwice 1998, 75-101.
  • [24] M. Szalewski, Losses in a piezoelectric ceramic in high fields, Archives of Acoustics, 24, 1, 57-74 (1999).
  • [25] S. Takahashi, S. Hirose, K. Uchino and K.Y. Oh, Electromechanical characteristics of lead zirconate-titanate ceramics under vibration level change, Proc. 9th IEEE Int. Symp. Appl. Ferroelectrics, 377-382 (1994).
  • [26] S. Takahashi, M. Yamamoto and Y. Sasaki, Nonlinear piezoelectric effect in ferroelectric ceramics, Jpn. J. Appl. Phys., Part 1, 37, 9B, 5292-5296 (1998).
  • [27] S. Takahashi, Y. Sasaki and S. Hirose, Driving electric field effects on piezoelectric transducers, Jpn. J. Appl. Phys., Part 1, 36, 5B, 3010-3015 (1997).
  • [28] S. Tashiro, M. Ikehiro and H. Igarashi, Influence of temperature rise and vibration level on the electromechanical properties of high-power piezoelectric ceramics, Jpn. J. Appl. Phys., Part 1, 36, 5B, 3004-3009 (1997).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0006-0022
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