Liquid phase sintered SiC. Processing and transformation controlled microstructure tailoring

dc.contributor.authorIZHEVSKYI, V.A.pt_BR
dc.contributor.authorGENOVA, L.A.pt_BR
dc.contributor.authorBRESSIANI, A.H.A.pt_BR
dc.contributor.authorBRESSIANI, J.C.pt_BR
dc.coverageNacionalpt_BR
dc.date.accessioned2014-07-31T11:33:02Zpt_BR
dc.date.accessioned2014-07-31T11:50:48Z
dc.date.available2014-07-31T11:33:02Zpt_BR
dc.date.available2014-07-31T11:50:48Z
dc.date.issued2000pt_BR
dc.description.abstractMicrostructure development and phase formation processes during sintering of silicon carbide based materials with AlN-Y2O3, AlN-Yb2O3, and AlN-La2O3 sintering additives were investigated. Densification of the materials occurred by liquid-phase sintering mechanism. Proportion of α- and β-SiC powders in the initial mixtures was a variable parameter, while the molar ratio of AlN/RE2O3, and the total amount of additives (10 vol. %) were kept constant. Shrinkage behavior during sintering in interrelation with the starting composition of the material and the sintering atmosphere was investigated by high temperature dilatometry. Kinetics of β-SiC to α-SiC phase transformation during post-sintering heat treatment at temperatures 1900-1950 °C was studied, the degree of phase transformation being determined by quantitative x-ray analysis using internal standard technique. Evolution of microstructure resulting from β-SiC to α-SiC transformation was followed up by scanning electron microscopy on polished and chemically etched samples. Transformation-controlled grain growth mechanism similar to the one observed for silicon nitride based ceramics was established. Possibility of in-situ platelet reinforced dense SiC-based ceramics fabrication with improved mechanical properties by means of sintering was shown.
dc.format.extent131-138pt_BR
dc.identifier.citationIZHEVSKYI, V.A.; GENOVA, L.A.; BRESSIANI, A.H.A.; BRESSIANI, J.C. Liquid phase sintered SiC. Processing and transformation controlled microstructure tailoring. <b>Materials Research</b>, v. 3, n. 4, p. 131-138, 2000. DOI: <a href="https://dx.doi.org/10.1590/S1516-14392000000400007">10.1590/S1516-14392000000400007</a>. Disponível em: http://repositorio.ipen.br/handle/123456789/7201.
dc.identifier.doi10.1590/S1516-14392000000400007
dc.identifier.fasciculo4pt_BR
dc.identifier.issn1516-1439pt_BR
dc.identifier.orcidhttps://orcid.org/0000-0002-5172-5082
dc.identifier.urihttp://repositorio.ipen.br/handle/123456789/7201pt_BR
dc.identifier.vol3pt_BR
dc.relation.ispartofMaterials Researchpt_BR
dc.rightsopenAccessen
dc.subjectsilicon carbidespt_BR
dc.subjectceramicspt_BR
dc.subjectsinteringpt_BR
dc.subjectmicrostructurept_BR
dc.subjectaluminium nitridespt_BR
dc.subjectrare earth compoundspt_BR
dc.subjectoxidespt_BR
dc.subjectphase transformationspt_BR
dc.subjectshrinkagept_BR
dc.subjectgrain growthpt_BR
dc.titleLiquid phase sintered SiC. Processing and transformation controlled microstructure tailoringpt_BR
dc.typeArtigo de periódicopt_BR
dspace.entity.typePublication
ipen.autorJOSE CARLOS BRESSIANI
ipen.autorANA HELENA DE ALMEIDA BRESSIANI
ipen.autorLUIS ANTONIO GENOVA
ipen.codigoautor1459
ipen.codigoautor96
ipen.codigoautor320
ipen.contributor.ipenauthorJOSE CARLOS BRESSIANI
ipen.contributor.ipenauthorANA HELENA DE ALMEIDA BRESSIANI
ipen.contributor.ipenauthorLUIS ANTONIO GENOVA
ipen.date.recebimento02-08pt_BR
ipen.identifier.ipendoc07398pt_BR
ipen.type.genreArtigo
relation.isAuthorOfPublicationf9cbec71-8864-4175-998d-637777f90c2d
relation.isAuthorOfPublication04d834e7-faee-4461-8fa7-5e5071ec48cc
relation.isAuthorOfPublicatione7af24e8-0db9-49d2-8caf-92fd57c2686b
relation.isAuthorOfPublication.latestForDiscoverye7af24e8-0db9-49d2-8caf-92fd57c2686b
sigepi.autor.atividadeGENOVA, L.A.:320:-1:Npt_BR
sigepi.autor.atividadeBRESSIANI, A.H.A.:96:-1:Npt_BR
sigepi.autor.atividadeBRESSIANI, J.C.:1459:-1:Npt_BR

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