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Microstructural evolution of Al2O3-SiC nanocomposites during spark plasma sintering

Authors
Chae, Jae hongKim, Kyung hunChoa, Yong HoMatsushita, Jun ichiYoon, Jong wonShim, Kwang bo
Issue Date
Mar-2006
Publisher
Elsevier BV
Keywords
spark plasma sintering; Al2O3-SiC nanocomposites; densification behavior; mechanical properties
Citation
Journal of Alloys and Compounds, v.413, no.1-2, pp.259 - 264
Indexed
SCIE
SCOPUS
Journal Title
Journal of Alloys and Compounds
Volume
413
Number
1-2
Start Page
259
End Page
264
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/44990
DOI
10.1016/j.jallcom.2005.05.049
ISSN
0925-8388
Abstract
Al2O3-SiC nanocomposites were fabricated using a spark plasma sintering (SPS) technique, and their densification behavior and mechanical properties were investigated. The rate of densification was higher for the SPS process compared with a conventional hot-pressing process. This enhancement was attributed to an acceleration of the diffusion process due to additional mass-transport mechanisms induced by the spark plasma. Al2O3-SiC nanocomposites were found to possess microstructures of fine SiC particles dispersed within the Al2O3 inatrix grains and/or at the grain boundaries. These nanocomposites (20 vol% SiC) had an average fracture toughness of 3.6 MPa m(1/2) and flexural strength of 812 MPa compared with 2.95 MPa m(1/2) and 663 MPa for the pure Al2O3 compacts, respectively. These increases over the pure matrix have been attributed to the increased rate of densification and to the change in microstructure due to the dispersion of the nano-sized second phase SiC particles. (c) 2005 Elsevier B.V. All rights reserved.
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CHOA, YONG HO
ERICA 공학대학 (DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING)
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