Strain-induced deformation in magnesia-alumina layered composites

Authors
Kim, CSLombardo, SJWinholtz, RA
Issue Date
2005-08
Publisher
WILEY
Citation
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, v.88, no.8, pp.2064 - 2070
Abstract
Ceramic beams are induced in situ to form complex shapes at elevated temperature without the application of an external stress. This process has been demonstrated for thin alumina substrates coated with a layer of magnesia. The internal strain causing the substrates to deform at elevated temperature arises as a consequence of strain mismatch accompanying the penetration of the coating into the substrate. The magnitude of the deformation depends on the amount of coating applied, on the thickness of the substrate, on the density of the substrate, and on the temperature. During exposure of the beams to elevated temperature, the magnesia coating reacts with the alumina substrate to form the spinel phase; the resulting volume change accompanying the phase transformation is likely the predominant driving force for deformation.
Keywords
CAST GREEN BODIES; CONSTRAINED DENSIFICATION; EXTERNAL-PRESSURE; MISMATCH STRAIN; THIN-FILMS; ACTUATORS; CURVATURE; CERAMICS; STRESSES; DETECTOR; CAST GREEN BODIES; CONSTRAINED DENSIFICATION; EXTERNAL-PRESSURE; MISMATCH STRAIN; THIN-FILMS; ACTUATORS; CURVATURE; CERAMICS; STRESSES; DETECTOR
ISSN
0002-7820
URI
https://pubs.kist.re.kr/handle/201004/136275
DOI
10.1111/j.1551-2916.2005.00410.x
Appears in Collections:
KIST Article > 2005
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