The influence of preparation conditions on the electro-acoustic properties of the PZT-type piezoceramic sensors
Abstract
The possibilities of the application of the microstructure analysis, X-ray powder diffraction, and Raman scattering methods for the fast and reliable control of the quality of piezoelectric ceramic sensors at every stage of preparation are shown.References
[1] B. Jaffe, W.R. Cook, H. Jaffe, Piezoelectric ceramics, Acad. Press, New York 1971.
[2] K. Okazaki, Bull. Am. Ceram. Soc, 63, 9, 1150 (1984).
[3] C.A. Rogers, J. Intell. Mater. Syst. Struct, 4, 4 (1993).
[4] L.E. Cross, J. Intell. Mater. Syst. Struct., 6, 55 (1995).
[5] G. Shirane, K. Suzuki and A. Takeda, Phys. Soc. Japan, 7, 12 (1952).
[6] V.A. Isupov, Solid St.Commun., 17, 1331 (1975).
[7] M. Kupriyanov, G. Konstantinov and A. Panich, Ferroelectric morphotropic transitions, RGU, Rostov-on-Don 1992.
[8] J. Dudek and M. Kupriyanov, Inzynieria Materiałowa, 6, 71, 129 (1992).
[9] A. Panich and M. Kupriyanov, Physics and technology of ferroelectric ceramics, RGU, Rostovon-Don 1989.
[10] Z. Surowiak, J. Dudek and M. Łoposzko, Inzynieria Materiałowa, 6, 71, 123 (1992).
[11] K. Okazaki, Ceramic engineering for dielectrics, Tokyo 1969.
[12] Z. Surowiak and V.P. Dudkevich, Cienkie warstwy ferroelektryczne, Uniw. Sl., Katowice 1996.
[13] R.C. Buchanan, T.R. Armstrong and R.D. Roseman, Ferroelectrics, 135, 343 (1992).
[14] V. Kogan and M. Kupriyanov, J. Appl. Cryst., 25, 16 (1992).
[15] J. Dudek J., Ya. Bogosova, D. Czekaj, G. Konstantinov, M. Kupriyanov and A. Panich, Proc. of 15th Conf. Appl. Cryst., Cieszyn, Poland, p. 278 (1992).
[16] J. Kwapulinski, Z. Surowiak, M. Kupriyanov et al., ZTF, 49, 1049 (1979).
[17] J. Dudek, M.F. Kupriyanov, M. Loposzko and E.G. Fesenko, Acta Physica Polonica, A63, 115 (1983).
[18] G. Konstantinov, M. Kupriyanov, V. Servuli et al., ZTF, 59, 80 (1989).
[19] M.E. Lines and A.M. Glass, Principles and application of ferroelectrics and related materials, Clarendon Press, Oxford 1977.
[20] T. Błachowicz and Z. Kleszczewski, Akustyka Mol. i Kwantowa, 16, 23 (1995).
[2] K. Okazaki, Bull. Am. Ceram. Soc, 63, 9, 1150 (1984).
[3] C.A. Rogers, J. Intell. Mater. Syst. Struct, 4, 4 (1993).
[4] L.E. Cross, J. Intell. Mater. Syst. Struct., 6, 55 (1995).
[5] G. Shirane, K. Suzuki and A. Takeda, Phys. Soc. Japan, 7, 12 (1952).
[6] V.A. Isupov, Solid St.Commun., 17, 1331 (1975).
[7] M. Kupriyanov, G. Konstantinov and A. Panich, Ferroelectric morphotropic transitions, RGU, Rostov-on-Don 1992.
[8] J. Dudek and M. Kupriyanov, Inzynieria Materiałowa, 6, 71, 129 (1992).
[9] A. Panich and M. Kupriyanov, Physics and technology of ferroelectric ceramics, RGU, Rostovon-Don 1989.
[10] Z. Surowiak, J. Dudek and M. Łoposzko, Inzynieria Materiałowa, 6, 71, 123 (1992).
[11] K. Okazaki, Ceramic engineering for dielectrics, Tokyo 1969.
[12] Z. Surowiak and V.P. Dudkevich, Cienkie warstwy ferroelektryczne, Uniw. Sl., Katowice 1996.
[13] R.C. Buchanan, T.R. Armstrong and R.D. Roseman, Ferroelectrics, 135, 343 (1992).
[14] V. Kogan and M. Kupriyanov, J. Appl. Cryst., 25, 16 (1992).
[15] J. Dudek J., Ya. Bogosova, D. Czekaj, G. Konstantinov, M. Kupriyanov and A. Panich, Proc. of 15th Conf. Appl. Cryst., Cieszyn, Poland, p. 278 (1992).
[16] J. Kwapulinski, Z. Surowiak, M. Kupriyanov et al., ZTF, 49, 1049 (1979).
[17] J. Dudek, M.F. Kupriyanov, M. Loposzko and E.G. Fesenko, Acta Physica Polonica, A63, 115 (1983).
[18] G. Konstantinov, M. Kupriyanov, V. Servuli et al., ZTF, 59, 80 (1989).
[19] M.E. Lines and A.M. Glass, Principles and application of ferroelectrics and related materials, Clarendon Press, Oxford 1977.
[20] T. Błachowicz and Z. Kleszczewski, Akustyka Mol. i Kwantowa, 16, 23 (1995).