3Y-TZP/Si2N2O composite obtained by pressureless sintering

Detalhes bibliográficos
Autor(a) principal: SANTOS, CARLOS A.X.
Data de Publicação: 2017
Outros Autores: HAYAKAWA, MOTOZO, BRESSIANI, JOSE C., INTERNATIONAL LATIN-AMERICAN CONFERENCE ON POWDER TECHNOLOGY, 6th
Tipo de documento: Artigo de conferência
Título da fonte: Repositório Institucional do IPEN
Texto Completo: http://repositorio.ipen.br/handle/123456789/27492
Resumo: Y-TZP presents excellent properties at room temperature but these properties decrease as the temperature increases. This paper studies the behavior 20vol%Si3N4-SiC when added in YTZP matrix and heated under no pressure system. Al2O3 and Y2O3 were used to maintain the stability of the matrix and as sintering aids. The addition of Si3N4 and SiC in a Y-TZP matrix leads to formation of silicon oxynitride and it increases the mechanical properties like toughness and hardness. The mixture was milled and molded by CIP. Samples were heated at 1500??C, 1600??C and 1700??C for 2h without pressure under atmospheric conditions in bed-powders of Si3N4. Samples were characterized by XRD. Density, hardness, toughness, bending strength were measured. The structure of the material was observed in SEM/EPMA to verify the distribution of the materials in the composite. The formation of Si2N2O was observed in the sintered material and it showed an increment of both hardness and toughness as temperature increases. The samples presented considerable resistance of oxidation at 1000??C.
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spelling 2017-05-23T17:56:42Z2017-05-23T17:56:42ZNovember 07-10, 2007http://repositorio.ipen.br/handle/123456789/27492Y-TZP presents excellent properties at room temperature but these properties decrease as the temperature increases. This paper studies the behavior 20vol%Si3N4-SiC when added in YTZP matrix and heated under no pressure system. Al2O3 and Y2O3 were used to maintain the stability of the matrix and as sintering aids. The addition of Si3N4 and SiC in a Y-TZP matrix leads to formation of silicon oxynitride and it increases the mechanical properties like toughness and hardness. The mixture was milled and molded by CIP. Samples were heated at 1500??C, 1600??C and 1700??C for 2h without pressure under atmospheric conditions in bed-powders of Si3N4. Samples were characterized by XRD. Density, hardness, toughness, bending strength were measured. The structure of the material was observed in SEM/EPMA to verify the distribution of the materials in the composite. The formation of Si2N2O was observed in the sintered material and it showed an increment of both hardness and toughness as temperature increases. The samples presented considerable resistance of oxidation at 1000??C.Submitted by Marco Antonio Oliveira da Silva (maosilva@ipen.br) on 2017-05-23T17:56:42Z No. of bitstreams: 1 22863.pdf: 822985 bytes, checksum: 406076a70c195fd2540f9a3fb41d3fcb (MD5)Made available in DSpace on 2017-05-23T17:56:42Z (GMT). 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dc.title.pt_BR.fl_str_mv 3Y-TZP/Si2N2O composite obtained by pressureless sintering
title 3Y-TZP/Si2N2O composite obtained by pressureless sintering
spellingShingle 3Y-TZP/Si2N2O composite obtained by pressureless sintering
SANTOS, CARLOS A.X.
composite materials
experimental data
fracture properties
silicon carbides
silicon nitrides
sintering
temperature dependence
temperature range 1000-4000 k
tetragonal lattices
vickers hardness
yttrium oxides
zirconium oxides
title_short 3Y-TZP/Si2N2O composite obtained by pressureless sintering
title_full 3Y-TZP/Si2N2O composite obtained by pressureless sintering
title_fullStr 3Y-TZP/Si2N2O composite obtained by pressureless sintering
title_full_unstemmed 3Y-TZP/Si2N2O composite obtained by pressureless sintering
title_sort 3Y-TZP/Si2N2O composite obtained by pressureless sintering
author SANTOS, CARLOS A.X.
author_facet SANTOS, CARLOS A.X.
HAYAKAWA, MOTOZO
BRESSIANI, JOSE C.
INTERNATIONAL LATIN-AMERICAN CONFERENCE ON POWDER TECHNOLOGY, 6th
author_role author
author2 HAYAKAWA, MOTOZO
BRESSIANI, JOSE C.
INTERNATIONAL LATIN-AMERICAN CONFERENCE ON POWDER TECHNOLOGY, 6th
author2_role author
author
author
dc.contributor.author.fl_str_mv SANTOS, CARLOS A.X.
HAYAKAWA, MOTOZO
BRESSIANI, JOSE C.
INTERNATIONAL LATIN-AMERICAN CONFERENCE ON POWDER TECHNOLOGY, 6th
dc.subject.por.fl_str_mv composite materials
experimental data
fracture properties
silicon carbides
silicon nitrides
sintering
temperature dependence
temperature range 1000-4000 k
tetragonal lattices
vickers hardness
yttrium oxides
zirconium oxides
topic composite materials
experimental data
fracture properties
silicon carbides
silicon nitrides
sintering
temperature dependence
temperature range 1000-4000 k
tetragonal lattices
vickers hardness
yttrium oxides
zirconium oxides
description Y-TZP presents excellent properties at room temperature but these properties decrease as the temperature increases. This paper studies the behavior 20vol%Si3N4-SiC when added in YTZP matrix and heated under no pressure system. Al2O3 and Y2O3 were used to maintain the stability of the matrix and as sintering aids. The addition of Si3N4 and SiC in a Y-TZP matrix leads to formation of silicon oxynitride and it increases the mechanical properties like toughness and hardness. The mixture was milled and molded by CIP. Samples were heated at 1500??C, 1600??C and 1700??C for 2h without pressure under atmospheric conditions in bed-powders of Si3N4. Samples were characterized by XRD. Density, hardness, toughness, bending strength were measured. The structure of the material was observed in SEM/EPMA to verify the distribution of the materials in the composite. The formation of Si2N2O was observed in the sintered material and it showed an increment of both hardness and toughness as temperature increases. The samples presented considerable resistance of oxidation at 1000??C.
publishDate 2017
dc.date.evento.pt_BR.fl_str_mv November 07-10, 2007
dc.date.accessioned.fl_str_mv 2017-05-23T17:56:42Z
dc.date.available.fl_str_mv 2017-05-23T17:56:42Z
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