DocumentCode
3078477
Title
Ferroelectric ceramics with included porosity for hydrophone applications
Author
Roncari, E. ; Galassi, C. ; Craciun, F. ; Guidarelli, G. ; Marselli, S. ; Pavia, V.
Author_Institution
Ist. di Ricerche Tecnologiche per la Ceramica, CNR, Faenza, Italy
fYear
1998
fDate
1998
Firstpage
373
Lastpage
376
Abstract
Porous piezoelectric ceramics have been prepared by mixing lead zirconate titanate (PZT) powder with fine particle organic additives. After mixing, the powder was cold pressed to form samples that were then heated to eliminate the organic component. Sintered samples were cut, polished, then electroded and poled in high electric field. Elastic, dielectric and piezoelectric characterisation was done on standard shape samples in agreement with IEEE standards. Important variations of those coefficients with respect to dense material were registered. In particular, the piezoelectric voltage coefficient was greatly increased. Moreover, with respect to starting dense PZT, the hydrostatic figure of merit for some compositions increased by almost two orders of magnitude, while the acoustical impedance was highly decreased. An optimum composition has been identified in order to obtain materials with high piezoelectric coefficients and reasonably good mechanical resistance and a set of samples was prepared for testing in a hydrophone device. Sensor elements with similar properties have been selected from this set and assembled in a planar hydrophone. Results on sensitivity measurements in air and under pressure are presented and discussed
Keywords
acoustic impedance; dielectric polarisation; ferroelectric ceramics; hydrophones; lead compounds; organic compounds; piezoceramics; porous materials; sintering; ultrasonic transducers; PZT; PZT powder; PbZrO3TiO3; acoustical impedance; dielectric characterisation; elastic characterisation; ferroelectric ceramics; fine particle organic additives; hydrophone applications; hydrostatic figure of merit; lead zirconate titanate; optimum composition; piezoelectric characterisation; piezoelectric voltage coefficient; planar hydrophone; porosity; porous piezoelectric ceramics; sensitivity; sensor elements; sintered samples; Additives; Ceramics; Dielectric materials; Ferroelectric materials; Impedance; Powders; Shape; Sonar equipment; Titanium compounds; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of Ferroelectrics, 1998. ISAF 98. Proceedings of the Eleventh IEEE International Symposium on
Conference_Location
Montreux
ISSN
1099-4734
Print_ISBN
0-7803-4959-8
Type
conf
DOI
10.1109/ISAF.1998.786711
Filename
786711
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