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Please use this identifier to cite or link to this item: http://acervodigital.unesp.br/handle/11449/75517
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dc.contributor.authorDelbrücke, Tiago-
dc.contributor.authorGouvêa, Rogério A.-
dc.contributor.authorMoreira, Mário L.-
dc.contributor.authorRaubach, Cristiane W.-
dc.contributor.authorVarela, José Arana-
dc.contributor.authorLongo, Elson-
dc.contributor.authorGonçalves, Margarete R.F.-
dc.contributor.authorCava, Sergio-
dc.date.accessioned2014-05-27T11:29:35Z-
dc.date.accessioned2016-10-25T18:48:56Z-
dc.date.available2014-05-27T11:29:35Z-
dc.date.available2016-10-25T18:48:56Z-
dc.date.issued2013-06-01-
dc.identifierhttp://dx.doi.org/10.1016/j.jeurceramsoc.2012.11.009-
dc.identifier.citationJournal of the European Ceramic Society, v. 33, n. 6, p. 1087-1092, 2013.-
dc.identifier.issn0955-2219-
dc.identifier.urihttp://hdl.handle.net/11449/75517-
dc.identifier.urihttp://acervodigital.unesp.br/handle/11449/75517-
dc.description.abstractIn this research report, a sintering process of porous ceramic materials based on Al2O3 was employed using a method where a cation precursor solution is embedded in an organic fibrous cotton matrix. For porous green bodies, the precursor solution and cotton were annealed at temperatures in the range of 100-1600°C using scanning electron microscopy (SEM) and thermogravimetric (TG) analysis to obtain a porous body formation and disposal process containing organic fibers and precursor solution. In a structure consisting of open pores and interconnected nanometric grains, despite the low porosity of around 40% (calculated geometrically), nitrogen physisorption determined a specific surface area of 14m2/g, which shows much sintering of porous bodies. Energy dispersive X-ray (EDX) and X-ray diffraction (XRD) analytical methods revealed a predominant amount of α-Al2O3 in the sintered samples. Thermal properties of the sintered Al2O3 fibers were obtained by using the Laser Flash which resulted in the lower thermal conductivity obtained by α-Al2O3 and therefore improved its potential use as an insulating material. © 2012 Elsevier Ltd.en
dc.format.extent1087-1092-
dc.language.isoeng-
dc.sourceScopus-
dc.subjectAl2O3-
dc.subjectChemically synthesized-
dc.subjectReplica method in organic matrix-
dc.subjectSintered porous body-
dc.subjectThermal properties-
dc.subjectAnalytical method-
dc.subjectDisposal process-
dc.subjectEnergy dispersive x-ray-
dc.subjectGreen body-
dc.subjectLaser flash-
dc.subjectLow porosity-
dc.subjectLow thermal conductivity-
dc.subjectNanometrics-
dc.subjectOrganic fibers-
dc.subjectOrganic matrix-
dc.subjectPorous alumina-
dc.subjectPorous bodies-
dc.subjectPorous ceramic materials-
dc.subjectPrecursor solutions-
dc.subjectResearch reports-
dc.subjectSintered samples-
dc.subjectSintering process-
dc.subjectThermogravimetric-
dc.subjectAluminum-
dc.subjectCotton-
dc.subjectPhysisorption-
dc.subjectScanning electron microscopy-
dc.subjectThermal conductivity-
dc.subjectThermodynamic properties-
dc.subjectThermogravimetric analysis-
dc.subjectX ray diffraction-
dc.subjectSintering-
dc.subjectGravimetry-
dc.subjectScanning Electron Microscopy-
dc.subjectThermal Analysis-
dc.subjectThermal Conductivity-
dc.subjectThermal Properties-
dc.subjectX Ray Diffraction-
dc.titleSintering of porous alumina obtained by biotemplate fibers for low thermal conductivity applicationsen
dc.typeoutro-
dc.contributor.institutionFederal University of Pelotas-
dc.contributor.institutionUniversidade Federal de São Carlos (UFSCar)-
dc.contributor.institutionUniversidade Estadual Paulista (UNESP)-
dc.description.affiliationGraduate Program in Science and Materials Engineering Technology Development Center Federal University of Pelotas, 96010-900 Pelotas, RS-
dc.description.affiliationDepartment of Physics Institute of Physics and Mathematics Federal University of Pelotas, 96010-900, Pelotas, RS-
dc.description.affiliationInterdisciplinary Laboratory of Electrochemistry and Ceramics Federal University of Sao Carlos, 18052-780 São Carlos, SP-
dc.description.affiliationNational Institute of Science and Technology of Materials in Nanotechnology Paulista State University, 14801-907, Araraquara, SP-
dc.description.affiliationUnespNational Institute of Science and Technology of Materials in Nanotechnology Paulista State University, 14801-907, Araraquara, SP-
dc.identifier.doi10.1016/j.jeurceramsoc.2012.11.009-
dc.identifier.wosWOS:000315313900004-
dc.rights.accessRightsAcesso restrito-
dc.relation.ispartofJournal of the European Ceramic Society-
dc.identifier.scopus2-s2.0-84873077617-
Appears in Collections:Artigos, TCCs, Teses e Dissertações da Unesp

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