Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites

TEM and 3D crack analysis by focused ion beam (FIB) cross sectioning have been used to quantify the subsurface damage beneath scratches made by a 120° cone indenter loaded to 1 N in monolithic polycrystalline alumina and alumina/5vol.%SiC nanocomposites. In the nanocomposite, an extensive plastic de...

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Main Authors: Wu, H, Roberts, S, Mobus, G, Inkson, B
Format: Journal article
Language:English
Published: 2003
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author Wu, H
Roberts, S
Mobus, G
Inkson, B
author_facet Wu, H
Roberts, S
Mobus, G
Inkson, B
author_sort Wu, H
collection OXFORD
description TEM and 3D crack analysis by focused ion beam (FIB) cross sectioning have been used to quantify the subsurface damage beneath scratches made by a 120° cone indenter loaded to 1 N in monolithic polycrystalline alumina and alumina/5vol.%SiC nanocomposites. In the nanocomposite, an extensive plastic deformation zone was found under the scratch grooves, extending beyond the first layer of grains to a maximum plastic deformation depth of ∼7 μm below the surface of the track. In the alumina, however, the plastically deformed region only extends to a maximum depth of ∼4 μm and is contained within the first layer of grains adjacent to the groove surface. The 3D morphologies of the cracks under the scratches have been determined by FIB sectioning, showing that a high density of microcracks exists under the scratches in both ceramics. Differences between the plastic deformation and subsurface facture modes of the alumina and the nanocomposite are discussed. © 2002 Acta Materialia Inc. Published by Elsevier Science Ltd. All rights reserved.
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spelling oxford-uuid:6a525afa-b72b-46bd-ac7a-648386f06e032022-03-26T18:56:44ZSubsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocompositesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6a525afa-b72b-46bd-ac7a-648386f06e03EnglishSymplectic Elements at Oxford2003Wu, HRoberts, SMobus, GInkson, BTEM and 3D crack analysis by focused ion beam (FIB) cross sectioning have been used to quantify the subsurface damage beneath scratches made by a 120° cone indenter loaded to 1 N in monolithic polycrystalline alumina and alumina/5vol.%SiC nanocomposites. In the nanocomposite, an extensive plastic deformation zone was found under the scratch grooves, extending beyond the first layer of grains to a maximum plastic deformation depth of ∼7 μm below the surface of the track. In the alumina, however, the plastically deformed region only extends to a maximum depth of ∼4 μm and is contained within the first layer of grains adjacent to the groove surface. The 3D morphologies of the cracks under the scratches have been determined by FIB sectioning, showing that a high density of microcracks exists under the scratches in both ceramics. Differences between the plastic deformation and subsurface facture modes of the alumina and the nanocomposite are discussed. © 2002 Acta Materialia Inc. Published by Elsevier Science Ltd. All rights reserved.
spellingShingle Wu, H
Roberts, S
Mobus, G
Inkson, B
Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title_full Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title_fullStr Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title_full_unstemmed Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title_short Subsurface damage analysis by TEM and 3D FIB crack mapping in alumina and alumina/5vol.%SiC nanocomposites
title_sort subsurface damage analysis by tem and 3d fib crack mapping in alumina and alumina 5vol sic nanocomposites
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AT robertss subsurfacedamageanalysisbytemand3dfibcrackmappinginaluminaandalumina5volsicnanocomposites
AT mobusg subsurfacedamageanalysisbytemand3dfibcrackmappinginaluminaandalumina5volsicnanocomposites
AT inksonb subsurfacedamageanalysisbytemand3dfibcrackmappinginaluminaandalumina5volsicnanocomposites