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Multicomponent ceramic materials on the basis of PZT for the production of piezoelectric resonators

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Investigations on the influence of the PbTiO3 content on the crystalline and domain structure of PZT-based four-component solid solutions have been performed. It has been shown that there is a close relation between the structure and temperature stability of the resonance frequency (fr) of the fabricated piezoceramic transducers. Better and more stable results have been obtained by doping and modifying the basic chemical composition obtaining Pb(Zr1-x Tix)O3. The compositions with minimal Δ fr / fr, within the temperature range T = 213–358 K (in relation to room temperature Tr = 293 K), exhibited (i) the smallest internal friction (Q-1m), (ii) the highest mechanical quality (Qm), (iii) high values of spontaneous deformation of the elementary cell (δT and δRe), (iv) the complex a-c-domain structure in the tetragonal phase (T) and the simple domain structure in the rhombohedral phase (Re). The practical result of the present work was the fabrication of piezoceramic electric band filters exhibiting Δ fr / fr < 0.2% and a high mechanical quality factor (Qm = 3225).
Rocznik
Strony
87--107
Opis fizyczny
Bibliogr. 17 poz., tab., wykr., fot.
Twórcy
autor
  • University of Silesia, Department of Materials Sciences, Śnieżna 2, 41-200 Sosnowiec, Poland
autor
  • University of Silesia, Department of Materials Sciences, Śnieżna 2, 41-200 Sosnowiec, Poland
  • Rostov State University, Faculty of Physics, Zorge St. 5, 344-104 Rostov-on-Don, Russia
  • Rostov State University, Faculty of Physics, Zorge St. 5, 344-104 Rostov-on-Don, Russia
Bibliografia
  • [1] THOMMAN H., Stabilization effects in piezoelectric lead titanate circonate ceramics, Ferroelectrics, 4, 3, 141–146 (1972).
  • [2] XU Y., Ferroelectric materials and their applications, North-Holland, New York 1991.
  • [3] JAFFE B., COOK W. R., JAFFE H., Piezoelectric ceramics, Academic Press, London 1971.
  • [4] TOSHIO O., KIKUO W., Piezoelectric ceramics of Pb(Sn1/2 Sb1/2)O3 - PbTiO3 - PbZrO3 modified by the oxide application, J. Ceram. Soc. Jap., 92, 9, 510–519 (1984).
  • [5] KLIMOV V. V., Investigation of ferroelectric materials for electric filter, Ferroelectrics, 7, 1–4, 383–384 (1974).
  • [6] TAKAHASKI M., Space charge effect in Pb(Zr, Ti)O3 ceramics, Jap. J. Appl. Phys., 9, 10, 1236–1246 (1970).
  • [7] SCHNESSLER H. H., Filter and resonators, JEEE Trans. Sonics and Ultrasonics, 21, 4, 257–268 (1974).
  • [8] NAJEZCHLEB K., Composition and temperature dependence of resonant frequency of PbTiO3 - PbZrO3 ceramics with addition of Cr2O3, Ferroelectrics, 26, 1–4, 779–782 (1980).
  • [9] ROY P., DESHIPANDE B. S., Piezoelectric ceramics of Pb(Zr, Ti)O3 modified by the oxides of Cr, Mn, Co, U for ceramic electric wave filter application, Indian J. Pure and Appl. Phys., 22, 12, 708–714 (1984).
  • [10] SUROWIAK Z., BOCHENEK D., CZEKAJ D., GAVRILYACHENKO S. V., KUPRIYANOV M. F., Piezoceramic transducers with high thermal stability of resonance frequency, Ferroelectrics, 273, 119–124 (2002).
  • [11] SUROWIAK Z., GAVRILYACHENKO S. V., SKULSKI R., KUPRIANOV M. F., BOCHENEK D., Influence of cyclic phase transitions on some properties of the ferroelectric perovskites, J. Europ. Ceram. Soc., 22, 1863–1866 (2002).
  • [12] SUROWIAK Z., GAVRILYACHENKO S. V., KUPRIANOV M. F., BOCHENEK D., Dependence of the thermal stability of the resonance frequency on the B-O covalent bond degree in piezoceramics of the PZT-type, Archiwum nauki o materiałach, 21, 3–4, 117–188 (2000).
  • [13] PAZ DE ARAUJO C., SCOTT J. F., TAYLOR G. W. [Eds.], Ferroelectric thin films: synthesis and basic properties, Gordon and Breach Publishers, p. 233, Amsterdam 1996.
  • [14] RAHAMAN M. N., Ceramic processing and sintering, Marcel Dekker, Inc., New York-Basel 1995.
  • [15] SAN EMETERIO J. L., RAMOS A., SANZ P. T., CEGARRA M., Definition and measurement of the normalized electrical impedance of lossy piezoelectric resonators for ultrasonic transducers, Ultrasonics, 38, 1–8, 140–144 (2000).
  • [16] HOLMES J., PEARCE D., BUTTON T., Novel piezoelectric structures for sensor and actuator applications, Ferroelectrics, 224, 1–4, 21–28 (1999).
  • [17] BEDOYA C., Sr doped PbZr1-x TixO3 ceramic: structural study and field - induced reorientation of ferroelectric domains, Mater. Sci. and Engin., B75, 1, 43–52 (2000).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0019-0041
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