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Dissociation reaction of the 1/31¯101 edge dislocation in α-Al2O3.

Authors :
Tochigi, Eita
Mizoguchi, Teruyasu
Okunishi, Eiji
Nakamura, Atsutomo
Shibata, Naoya
Ikuhara, Yuichi
Source :
Journal of Materials Science. Jun2018, Vol. 53 Issue 11, p8049-8058. 10p. 2 Diagrams, 3 Graphs.
Publication Year :
2018

Abstract

It has been reported that dislocations with 1/31¯101<inline-graphic></inline-graphic> edge component of the Burgers vector are formed in {11¯<inline-graphic></inline-graphic>04}/112¯0<inline-graphic></inline-graphic> low-angle grain boundaries of alumina (α-Al2O3). These dislocations dissociate into two partial dislocations with a stacking fault on the (0001) plane (Tochigi et al. in J Mater Sci 46:4428-4433, <xref>2011</xref>). However, the dissociation reaction of these dislocations has not been determined so far. In this study, the structures of the dissociated dislocations and the (0001) stacking fault were investigated by transmission electron microscopy and theoretical calculations. It was revealed that the dissociated dislocations were generated from the 1/31¯101<inline-graphic></inline-graphic> perfect edge dislocation by the reaction of 1/31¯101<inline-graphic></inline-graphic> → 1/184¯223<inline-graphic></inline-graphic> + 1/182¯42¯3<inline-graphic></inline-graphic>. Furthermore, electron energy loss spectroscopy analysis was performed to examine the atomic/electronic structure of the (0001) stacking fault. In the observed spectra, a chemical shift and intensity decrease were found at the oxygen K-edge. Theoretical spectrum analysis using first-principles calculations revealed that the characteristic features of the spectra are originated from the local atomic configurations of the (0001) stacking fault. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00222461
Volume :
53
Issue :
11
Database :
Academic Search Index
Journal :
Journal of Materials Science
Publication Type :
Academic Journal
Accession number :
128506577
Full Text :
https://doi.org/10.1007/s10853-018-2133-7