• Journal of Advanced Dielectrics
  • Vol. 12, Issue 2, 2160006 (2022)
N. A. Shvetsova*, I. A. Shvetsov*, M. A. Lugovaya*, E. I. Petrova*, and A. N. Rybyanets*
Author Affiliations
  • Southern Federal University, No. 194 Stachky Ave, Rostov-on-Don 344090, Russia
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    DOI: 10.1142/S2010135X21600067 Cite this Article
    N. A. Shvetsova, I. A. Shvetsov, M. A. Lugovaya, E. I. Petrova, A. N. Rybyanets. Microstructure characterization and properties of porous piezoceramics[J]. Journal of Advanced Dielectrics, 2022, 12(2): 2160006 Copy Citation Text show less
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    [1] A. N. Rybyanets. Porous piezoelectric ceramics — A historical overview. Ferroelectrics, 419, 90(2011).

    [2] J. Wight. Cellular Ceramics: Structure, Manufacturing, Properties and Applications(2005).

    [3] A. N. Rybyanets. Ceramic Piezocomposites: Modeling, Technology, and Characterization(2010).

    [4] W. Pabst, E. Gregorova, T. Uhlifova. Processing, Microstructure, Properties, Applications and Curvature-Based Classification Schemes of Porous Ceramics(2017).

    [5] A. R. Studart, U. T. Gonzenbach, E. Tervoort, L. J. Gauckler. Processing routes to macroporous ceramics: A review. J. Am. Ceram. Soc., 89, 1771(2006).

    [6] S. H. Lee, S. H. Jun, H. E. Kim, Y. H. Koh. Fabrication of porous PZT-PZN piezoelectric ceramics with high hydrostatic figure of merits using camphene-based freeze casting. J. Am. Ceram. Soc., 90, 2807(2007).

    [7] A. N. Rybyanets. Porous Ceramics and Piezocomposites: Modeling, Technology, and Characterization(2017).

    [8] A. N. Rybyanets. Porous piezoceramics: Theory, technology, and properties. IEEE Trans. UFFC, 58, 1492(2011).

    [9] T. Zeng, X. Dong, C. Mao, Z. Zhou, H. Yang. Effects of pore shape and porosity on the properties of porous PZT 95/5 ceramics. J. Eur. Ceram. Soc., 27, 2025(2007).

    [10] A. N. Rybyanets, A. A. Naumenko, M. A. Lugovaya, N. A. Shvetsova. Electric power generations from PZT composite and porous ceramics for energy harvesting devices. Ferroelectrics, 484, 95(2015).

    [11] IEEE Standard on Piezoelectricity, ANSI/IEEE Std. 176-1987 (1988).

    [12] K. Hudai, R. Rajamami, R. Stevens, C. R. Bowen. Porous PZT ceramics for receiving transducers. IEEE Trans. UFFC, 50, 289(2003).

    [13] M. A. Lugovaya, I. A. Shvetsov, N. A. Shvetsova, A. V. Nasedkin, A. N. Rybyanets. Elastic losses and dispersion in porous piesoceramics. Ferroelectrics, 571, 263(2021).

    [14] A. N. Rybyanets. Recent Advances in Medical Ultrasound(2012).

    [15] A. Rybianets, Y. Eshel, L. Kushkuley. New low-Q ceramic piezocomposites for ultrasonic transducer applications. Proc. 2006 IEEE Ultrasonics Symp., 1911-1914(2006).

    N. A. Shvetsova, I. A. Shvetsov, M. A. Lugovaya, E. I. Petrova, A. N. Rybyanets. Microstructure characterization and properties of porous piezoceramics[J]. Journal of Advanced Dielectrics, 2022, 12(2): 2160006
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