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KALOUSEK, R. SPOUSTA, J. ZLÁMAL, J. DUB, P. ŠIKOLA, T. SHEN, Z. SALAMON, D. MACA, K.
Original Title
Rapid heating of zirconia nanoparticle-powder compacts by infrared radiation heat transfer
Type
journal article in Web of Science
Language
English
Original Abstract
Homogeneous rapid sintering of nanoparticle powder compacts of yttria-stabilized zirconia was achieved by the radiation heat transfer. Green bodies were prepared by cold isostatic pressing (CIP) at various pressures providing different porosity of samples before sintering. Pressure-less sintering was performed in air at a heating rate of 100 C/min up to the 1500 C/1 min. Scanning electron microscopy, mercury intrusion porosimetry, and Archimedes technique were used to characterize the microstructure and to determine the density of the green and sintered bodies. Contrary to expectations, our results reveal opposite dependence of the green- and sintered densities on the CIP pressure. Since the whole sintering process does not exceed 10 min, to propose what processes are responsible for observed results, our attention is focused on the radiation heat transfer from furnace heating elements into the ceramics. Our arguments are supported bynumerical calculations ofthe electromagneticfield enhancementin/between particles.
Keywords
Yttria-stabilized zirconia; Dielectric nanoparticle; Rapid sintering; Radiation heat transfer; Local electromagnetic field enhancement
Authors
KALOUSEK, R.; SPOUSTA, J.; ZLÁMAL, J.; DUB, P.; ŠIKOLA, T.; SHEN, Z.; SALAMON, D.; MACA, K.
Released
1. 3. 2017
ISBN
0955-2219
Periodical
Journal of the European Ceramic Society
Year of study
37
Number
3
State
United Kingdom of Great Britain and Northern Ireland
Pages from
1067
Pages to
1072
Pages count
6
BibTex
@article{BUT134132, author="Radek {Kalousek} and Jiří {Spousta} and Jakub {Zlámal} and Petr {Dub} and Tomáš {Šikola} and Zhijian {Shen} and David {Salamon} and Karel {Maca}", title="Rapid heating of zirconia nanoparticle-powder compacts by infrared radiation heat transfer", journal="Journal of the European Ceramic Society", year="2017", volume="37", number="3", pages="1067--1072", doi="10.1016/j.jeurceramsoc.2016.10.004", issn="0955-2219" }