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Influence of the Chemical Composition on the Physical Properties of Pzt-Type Piezoceramic Transducers.

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Result if investigations on influence of lead deficiency on the crystalline structure of PZT-type ceramic piezoelectric materials is presented. The solid solution of (x)PbTiO3-(1-x-y)PbZrO3-(y)SigmaPb(B'1-alfaB"alfa)O3, exhibiting the perovskite-type structure, condtitutes the basis of such materials. The lead deficiency was originated by a thermal treatment. Investigations on influence of lead deficiency on the crystalline structure of PZT-type ceramics have been performed for solid solutions exhibiting the chemical compositions corresponding to the tetragonal or rhombohedral boundary of the morphotropic region (PCR-1, PCR-8: "Piezoelectric Ceramics of Rostov") and to tetragonal phase region compositions (ceramics of Pb(Zr0.39Ti0.59W0.01Cd0.01)O3). It has been found that the deficiency in lead causes a change of the point group or a change of the space group of the perovskite phase crystalline structure of PZT. The solid solutions on the basis of Pb(Zr,Ti)O3 partly resolve themselves into PbTiO3, ZrO2 and (PbO) when the lead deficiency caused by thermal treatment increases.
Rocznik
Tom
Strony
183--209
Opis fizyczny
BIbliogr. 14 poz., rys.
Twórcy
autor
  • Silesian University, Department of Materials Science, 2 Sniezna Str., PL-41-200, Sosnowiec, Poland
autor
autor
  • Rostov State University, Faculty of Physics, 5, Zorge St., SU-344-104, Rostov-on-Don, Russia
  • Rostov State University, Faculty of Physics, 5, Zorge St., SU-344-104, Rostov-on-Don, Russia
  • Rostov State University, Faculty of Physics, 5, Zorge St., SU-344-104, Rostov-on-Don, Russia
  • Rostov State University, Faculty of Physics, 5, Zorge St., SU-344-104, Rostov-on-Don, Russia
Bibliografia
  • 1. B.Jaffe, W.R.Cook, H.Jaffe, Piezoelectric ceramics, Academic Press, London 1971.
  • 2. Y.Xu, Ferroelectric materials and their applications, North-Holland, New York 1991.
  • 3. K.Okazaki, Ceramic engineering for dielectrics, Zinatne, Tokyo 1969.
  • 4. M.N.Rahaman, Ceramic processing and sintering, Marcel Dekker, Inc., New York 1995, p.15.
  • 5. J.Dudek, M.F.Kupriyanoy, M.Łoposzko and E.G.Fesenko, Acta Phys.Polon., A63,115- 120 (1983).
  • 6. E.G.Fesenko, A.Ya.Danciger and O.N.Razumoyskaya, Ferroelectrics, 167, 97 (1995).
  • 7. Piezoelectric materiais: advances in science, technology and appłications£ós.C.Galassi, M.Dominescu, K.Uchino, and M.Sayer, Kluwer Academic Publishers, Dordrecht 2000, p.75.
  • 8. Ferroelectric thin films: synthesis and basie properties. Eds.C.Paz de Araujo, J.F.Scott, and G.W.Taylor. Gordon and Breach Publishers, Amsterdam 1996.
  • 9. D.Czekaj, A.Lisińska-Czekaj, M.F.Kupriyanov and Yu.N.Zakharov, J.Europ.Ceram.Soc.,19, 1149-1152(1999).
  • 10. M.Hammer and J.Hoffmann, J.Amer.Ceram.Soc., 81,3277-3284 (1998).
  • 11. J.Mendiola and L.Pardo, Ferroelectrics, 54, 199-202 (1984).
  • 12. Y.Nag and A.D.McDonald, Ferroelectrics, 62,167-178 (1985).
  • 13. E.G.Fesenko, A.Ya.Danciger and O.N.Razumovskaya, Piezoceramic material, Patent USSR No 528283 (1976).
  • 14. E.G.Fesenko, A.Ya.Danciger and O.N.Razumovskaya, Piezoceramic material, Patent USSR No 568618 (1977).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0008-0041
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