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dc.contributor.authorCastillo-Rodríguez, Miguel
dc.contributor.authorCastaing, J.
dc.contributor.authorMuñoz, A.
dc.contributor.authorVeyssière, P.
dc.contributor.authorDomínguez-Rodríguez, A.
dc.date.accessioned2024-02-07T07:39:05Z
dc.date.available2024-02-07T07:39:05Z
dc.date.issued2008
dc.identifier.issn1551-2916
dc.identifier.urihttp://hdl.handle.net/10396/27205
dc.description.abstractA model based on dislocation glide controlled by the nucleation and propagation of kink pairs in a high Peierls stress crystal is revisited and modified to account for changes in dislocation densities and segment lengths with temperature and stress. It is applied to the critical-resolved shear stress (CRSS) for basal and prism plane slip in sapphire (α-Al2O3). According to agreed-upon knowledge on dislocations in sapphire, basal slip and prism plane slip are modeled with undissociated and dissociated dislocations, respectively. In the latter case, partial dislocations move independently. Among a number of sets of fitting parameters, good fits between experimental and modeled CRSS's are obtained in the long segment limit over the whole range of temperatures by making use of physically sound parameters, including a stress dependence of the dislocation density.es_ES
dc.format.mimetypeapplication/pdfes_ES
dc.language.isoenges_ES
dc.publisherThe American Ceramic Societyes_ES
dc.rightshttps://creativecommons.org/licenses/by-nc-nd/4.0/es_ES
dc.sourceJournal of the American Ceramic Society, Vol 91, Issue 5 p. 1612-1617 (2008)es_ES
dc.subjectCeramicses_ES
dc.subjectCrystalline oxideses_ES
dc.subjectDislocation dynamicses_ES
dc.subjectSlipes_ES
dc.subjectPeierls mechanismes_ES
dc.titleAnalysis of a kink pair model applied to a peierls mechanism in basal and prism plane slips in sapphire (α-Al2O3) deformed between 200° and 1800°Ces_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.relation.publisherversionhttps://doi.org/10.1111/j.1551-2916.2008.02317.xes_ES
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses_ES


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