DocumentCode :
1322573
Title :
Ceramic piezocomposites: Modeling, technology, and characterization
Author :
Rybyanets, Andrey N ; Rybyanets, Anastasia A
Author_Institution :
Inst. of Phys., Southern Fed. Univ., Rostov-on-Don, Russia
Volume :
58
Issue :
9
fYear :
2011
fDate :
9/1/2011 12:00:00 AM
Firstpage :
1757
Lastpage :
1773
Abstract :
A comprehensive review of microstructure peculiarities, mathematical models, methods of fabrication and measurements, as well as systematic experimental data for different types of ceramic piezocomposites is presented. New families of polymer-free ceramic piezocomposites (composites ceramics/ceramics and ceramics/crystals) with properties combining better parameters of PZT, PN type ceramics, and 1-3 composites are introduced. New damped-by-scattering ceramic piezocomposites, characterized by previously unachievable parameter combinations, are proposed. New material design concepts and fabrication methods for ceramic piezocomposites are considered. Piezoelectric resonance analysis methods for automatic iterative evaluation of complex material parameters, together with the sets of complex constants for different ceramic piezocomposites, are presented. Microstructural and physical mechanisms of losses and dispersion in ceramic piezocomposites, as well as technological aspects for their large-scale manufacture and application in ultrasonic devices are considered.
Keywords :
composite materials; crystal microstructure; dielectric losses; dielectric resonance; lead compounds; permittivity; piezoceramics; piezoelectric transducers; piezoelectricity; reviews; ultrasonic transducers; PZT; PbNbO3; automatic iterative evaluation; complex constants; complex material parameters; damped-by-scattering ceramic piezocomposites; dispersion; fabrication method; large-scale manufacture; losses; material design; mathematical models; measurement method; microstructural mechanism; microstructure peculiarities; physical mechanism; piezoelectric resonance analysis methods; polymer-free ceramic piezocomposites; ultrasonic devices; Acoustics; Ceramics; Equations; Impedance; Material properties; Scattering;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2011.2013
Filename :
6020844
Link To Document :
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