Please use this identifier to cite or link to this item: https://ea.donntu.edu.ua/jspui/handle/123456789/25994
Title: PRODUCTION AND PROPERTIES OF NANOSTRUCTURED METAL-OXIDE LEAD ZIRCONATE–TITANATE PIEZOCERAMICS
Authors: Prisedskii, V. V.
Pogibko, V. M.
Polishchuk, V. S.
Keywords: sintering
consolidation
nanocrystalline powder
piezoceramics
lead zirconate–titanate
electrophysical properties
Issue Date: 2013
Publisher: Powder Metallurgy and Metal Ceramics, Vol. 52, Nos. 9-10, January, 2014 (Russian Original Vol. 52, Nos. 9-10, Sept.-Oct., 2013). - P. 505-513
Citation: Translated from Poroshkovaya Metallurgiya, Vol. 52, No. 9–10 (493), pp. 24–35, 2013. Original article submitted December 4, 2012
Abstract: Compact ceramic samples of lead zirconate–titanate are sintered from nanocrystalline (dav = 25 nm) Pb(Zr0.52Ti0.48)O3 powder synthesized by thermal decomposition of an oxalate precursor. Conditions of nanopowder compaction have been found and kinetics of sintering and growth of nanocrystallites and coarser grains formed during consolidation have been studied. The lead zirconate–titanate ceramic samples consolidated from nanopowders are sintered at lower (by 300–350°C) temperatures and have higher (by 25–45%) dielectric and piezoelectric properties as compared to samples fabricated by conventional solid-state technology. Two-level grain structure is formed during sintering: nanocrystallites divided by low-angle boundaries and descending from initial nanocrystalline particles and consolidated coarser micrograins divided by high-angle boundaries. Sintering of the lead zirconate–titanate ceramics from nanocrystalline powders permits controlling the nanoscale size of crystallites and thus the nanostructured features of consolidated material.
URI: http://ea.donntu.edu.ua/handle/123456789/25994
Appears in Collections:Наукові статті кафедри загальної хімії

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