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BIJALWAN, V. PRAJZLER, V. ERHART, J. VELAZQUEZ, J. GALUSEK, D. MACA, K.
Original Title
Rapid pressureless sintering of barium titanate-based piezoceramics and their electromechanical harvesting performance
Type
journal article in Web of Science
Language
English
Original Abstract
The innovative method of processing of Ba0.85Ca0.15Zr0.1Ti0.9O3 (BCZT), Ba0.95Ca0.05Ti0.91Sn0.09O3 (BCST), and BCZT doped with 0.07-wt.% CeO2 (Ce-BCZT) lead-free piezoceramics is presented. The rapid pressureless sintering (RPLS) technique can reduce high-temperature processing time more than eight times compared to the conventional sintering. RPLS was performed at a heating and cooling rate of 100 degrees C/min up to 1550 degrees C with 15-, 30-, 45-, and 60-min dwell times, producing defect and crack-free nearly dense ceramics. The optimal microstructure exhibiting the highest piezoelectric constant was reached after 30 min in BCZT (grain size 25-30 mu m, d(33) = 428 pC/N), 45 min in Ce-BCZT (grain size 30-35 mu m, d(33) = 515 pC/N), and 45 min of dwell time in BCST (grain size 58-68 mu m, d(33) = 443 pC/N). The highly competitive energy-harvesting properties were discovered for BCZT, resp. Ce-BCZT (n = 94.5, resp. 93.4%, FOMoff = 6.1, resp. 7.8 x 10(-10) m(2)/N) ceramics.
Keywords
energy harvesting; lead-free ceramics; microstructure; piezoelectric materials; properties; rapid pressureless sintering
Authors
BIJALWAN, V.; PRAJZLER, V.; ERHART, J.; VELAZQUEZ, J.; GALUSEK, D.; MACA, K.
Released
1. 11. 2022
Publisher
WILEY
Location
HOBOKEN
ISBN
1551-2916
Periodical
JOURNAL OF THE AMERICAN CERAMIC SOCIETY
Year of study
105
Number
11
State
United States of America
Pages from
6886
Pages to
6897
Pages count
12
URL
https://ceramics.onlinelibrary.wiley.com/doi/10.1111/jace.18602
BibTex
@article{BUT178860, author="Vijay {Bijalwan} and Vladimír {Prajzler} and Jiří {Erhart} and Jose J. {Velazquez} and Dušan {Galusek} and Karel {Maca}", title="Rapid pressureless sintering of barium titanate-based piezoceramics and their electromechanical harvesting performance", journal="JOURNAL OF THE AMERICAN CERAMIC SOCIETY", year="2022", volume="105", number="11", pages="6886--6897", doi="10.1111/jace.18602", issn="1551-2916", url="https://ceramics.onlinelibrary.wiley.com/doi/10.1111/jace.18602" }