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SALAMON, D. KALOUSEK, R. MACA, K. SHEN, Z.
Originální název
Rapid Grain Growth in 3Y-TZP Nanoceramics by Pressure-Assisted and Pressure-Less SPS
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
Pressure-less spark plasma sintering (SPS) is a new approach during which rapid densification of ceramic nanopowder green bodies is accompanied by rapid grain growth. Although the origin of this phenomenon has not yet been fully understood significant, difference in grain growth between pressure-less and pressure-assisted SPS was expected. In this work 3Y-TZP nanopowder with average particle size of 12 nm was consolidated using two-step approach: (1) at an intermediate temperature (600°C to 1000°C) SPS warm pressing followed by (2) high temperature (1400°C to 1600°C) pressure-less SPS. The standard one step pressure-assisted SPS experiments were quoted as references. Rapid grain growth was observed during both pressure-less and standard SPS. The samples prepared by both approaches at the same sintering temperature (1400°C–1600°C) achieved identical grain size and grain size distribution, if large pores were eliminated in early stage by SPS warm pressing. The electric current, electromagnetic field, and mechanical pressure is proven to have a negligible direct influence on grain growth in 3Y-TZP ceramics at temperatures. above 1000°C under standard SPS conditions.
Klíčová slova
Particle size; Spark plasma sintering; Zirconia
Autoři
SALAMON, D.; KALOUSEK, R.; MACA, K.; SHEN, Z.
Rok RIV
2015
Vydáno
1. 12. 2015
ISSN
0002-7820
Periodikum
Journal of the American Ceramic Society
Ročník
98
Číslo
12
Stát
Spojené státy americké
Strany od
3706
Strany do
3712
Strany počet
7
BibTex
@article{BUT120145, author="David {Salamon} and Radek {Kalousek} and Karel {Maca} and Zhijian {Shen}", title="Rapid Grain Growth in 3Y-TZP Nanoceramics by Pressure-Assisted and Pressure-Less SPS", journal="Journal of the American Ceramic Society", year="2015", volume="98", number="12", pages="3706--3712", doi="10.1111/jace.13837", issn="0002-7820" }