Monoclinic - tetragonal zirconia quantification of commercial nanopowder mixtures by XRD and DTA

cic.institucionOrigenCentro de Tecnología de Recursos Minerales y Cerámicaes
cic.isFulltexttruees
cic.isPeerReviewedtruees
cic.lugarDesarrolloCentro de Tecnología de Recursos Minerales y Cerámicaes
cic.lugarDesarrolloUniversidad Nacional de La Plataes
cic.versioninfo:eu-repo/semantics/publishedVersiones
dc.date.accessioned2019-03-28T16:03:53Z
dc.date.available2019-03-28T16:03:53Z
dc.identifier.urihttps://digital.cic.gba.gob.ar/handle/11746/9039
dc.titleMonoclinic - tetragonal zirconia quantification of commercial nanopowder mixtures by XRD and DTAen
dc.typeArtículoes
dcterms.abstractThe phase quantification in ceramic nanopowders presents technological interest for studying and design purposes. Especially in zirconia ceramics where the mechanical and transport properties are strongly affected by the crystalline composition. In this work we present the comparison XRD based methods and differential thermal analysis methods for phase characterization and specially quantification. A complete series of commercial nanopowders mixtures (D50 ≈ 0.1 μm) of monoclinic zirconia (m) and partially stabilized zirconia (t: 3 % yttrium oxide) was studied. X ray diffraction (XRD) was performed and the relation m:t was quantified by the so called Garvie-Nicholson (G-N), Toraya and Rietveld method. A complete reversible DTA analysis was carried out to the same mixtures. Both m-t and t-m martensitic thermal transformations were observed and pondered for the m-ZrO2 containing samples. The graphical integration was performed and employed for the construction of a calibration curve in the studied composition range. The results were compared, the Toraya method presented equivalent results in comparison with the Rietveld method. The G-N method presented appreciable differences (≈ 10 %). To assume a direct proportion of the m-ZrO2 content with the peak area resulted in important errors but if a simple calibration curve is constructed, the DTA method presents accurate quantification with results comparable to the best XRD based quantification.en
dcterms.creator.authorGauna, Matíases
dcterms.creator.authorConconi, María Susanaes
dcterms.creator.authorGómez, Sofíaes
dcterms.creator.authorSuárez, Gustavoes
dcterms.creator.authorAglietti, Estebanes
dcterms.creator.authorRendtorff Birrer, Nicolás Maximilianoes
dcterms.extentp. 318-325es
dcterms.identifier.otherISSN 1804-5847es
dcterms.identifier.urlRecurso onlinees
dcterms.isPartOf.issuevol. 59, no. 4es
dcterms.isPartOf.seriesCeramics-Silikátyes
dcterms.issued2015-10
dcterms.languageIngléses
dcterms.licenseAttribution-NonCommercial-NoDerivs 3.0 Unported (BY-NC-ND 3.0)es
dcterms.publisherUniversity of Chemistry and Technology (Prague)es
dcterms.subjectzirconiaen
dcterms.subjectnanopowdersen
dcterms.subjectXRDen
dcterms.subjectDTAen
dcterms.subject.materiaCerámicoses

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