Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.

Detalhes bibliográficos
Autor(a) principal: Pimenta, André Rocha
Data de Publicação: 2009
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UERJ
Texto Completo: http://www.bdtd.uerj.br/handle/1/11696
Resumo: There is a growing concern with the development of suitable materials for interactive working with the human body. Many searchs have been carried in the development of biomaterials for odontology applications and this dedication is justifiable for the large number of surgical interventions for tooth extractions in the entire world. During the manufacturing process of dental reconstructions, which use metal-ceramic systems, a heat treatment is used to promote adhesion of the porcelain in the metal. However, it is known that heat treatment can change the metallic materials microstructure, changing their properties. This work evaluated the mechanical properties and microstructural changing of the nickel base alloy (FIT CAST-SB) used in odontology, when the alloy is submitted to the heat treatment for the porcelain adhesion (demented of firing ). First the alloy was cast using the technical of centrifugation and lost-wax. After that, one samples group (TT group) was submitted for porcelain firing heat treatment and another group (F group), remained only cast. The F and TT groups were submitted to tensile test. The F and TT groups, and the material as received by the manufacturer (CR group), were submitted to microhardness test and microstructural characterization, this latter using scanning electron microscopic. The F and CR groups were submitted to quantitative chemical analysis (atomic emission spectroscopy) and semi-quantitative by Energy Dispersive Spectroscopy (EDS) in the MEV, and this last technique was applied to TT group too. The digital images process technique was applied to micrographics of F and TT groups, to determine the changes in the material phases before and after heat treatment. All results were submitted to the hypothesis test of Student s t-distribution. For the samples tested, it was concluded that the tensile strength was higher then the manufacturer information, respectively 559,39 and 545,55 MPa for F and TT groups, against 306 MPa informed by the manufacturer. However, the yield point was slightly lower, 218,81 and 240,58 MPa for F and TT groups, respectively, against 258 informed by the manufacturer. The microhardness results were about 70HV, higher than 21HV informed by the manufacturer. It was concluded, with 95% of confiability, that there was no mechanical properties and microstructure (percent and size of the phases) changes, before and after porcelain firing, in the specimens used. The alloy microstructure, when observed by scanning electron microscopy (SEM) in backscattered electron mode (BSE mode) is formed by a matrix with dendritc structure and gray color, a second phase interdendritc with white color and lacy appearance, and black precipitates, and porosity are also found.
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spelling Diniz, Marilia Garciahttp://lattes.cnpq.br/6597447489234947Soeiro, Francisco José da Cunha Pireshttp://lattes.cnpq.br/8690926504635230Miranda, Mauro Sayão dehttp://lattes.cnpq.br/8200556328597202Solórzano-naranjo, Ivan Guillermohttp://lattes.cnpq.br/2026158191882621Borges, Lavínia Maria Sanabio Alveshttp://lattes.cnpq.br/3996404436225621http://lattes.cnpq.br/2962103182860488Pimenta, André Rocha2021-01-06T19:12:36Z2013-07-082009-11-25PIMENTA, André Rocha. Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.. 2009. 120 f. Dissertação (Mestrado em Fenômenos de transporte; Mecânica dos sólidos) - Universidade do Estado do Rio de Janeiro, Rio de Janeiro, 2009.http://www.bdtd.uerj.br/handle/1/11696There is a growing concern with the development of suitable materials for interactive working with the human body. Many searchs have been carried in the development of biomaterials for odontology applications and this dedication is justifiable for the large number of surgical interventions for tooth extractions in the entire world. During the manufacturing process of dental reconstructions, which use metal-ceramic systems, a heat treatment is used to promote adhesion of the porcelain in the metal. However, it is known that heat treatment can change the metallic materials microstructure, changing their properties. This work evaluated the mechanical properties and microstructural changing of the nickel base alloy (FIT CAST-SB) used in odontology, when the alloy is submitted to the heat treatment for the porcelain adhesion (demented of firing ). First the alloy was cast using the technical of centrifugation and lost-wax. After that, one samples group (TT group) was submitted for porcelain firing heat treatment and another group (F group), remained only cast. The F and TT groups were submitted to tensile test. The F and TT groups, and the material as received by the manufacturer (CR group), were submitted to microhardness test and microstructural characterization, this latter using scanning electron microscopic. The F and CR groups were submitted to quantitative chemical analysis (atomic emission spectroscopy) and semi-quantitative by Energy Dispersive Spectroscopy (EDS) in the MEV, and this last technique was applied to TT group too. The digital images process technique was applied to micrographics of F and TT groups, to determine the changes in the material phases before and after heat treatment. All results were submitted to the hypothesis test of Student s t-distribution. For the samples tested, it was concluded that the tensile strength was higher then the manufacturer information, respectively 559,39 and 545,55 MPa for F and TT groups, against 306 MPa informed by the manufacturer. However, the yield point was slightly lower, 218,81 and 240,58 MPa for F and TT groups, respectively, against 258 informed by the manufacturer. The microhardness results were about 70HV, higher than 21HV informed by the manufacturer. It was concluded, with 95% of confiability, that there was no mechanical properties and microstructure (percent and size of the phases) changes, before and after porcelain firing, in the specimens used. The alloy microstructure, when observed by scanning electron microscopy (SEM) in backscattered electron mode (BSE mode) is formed by a matrix with dendritc structure and gray color, a second phase interdendritc with white color and lacy appearance, and black precipitates, and porosity are also found.É crescente a preocupação com o desenvolvimento de materiais adequados a trabalharem interagindo com o corpo humano. Diversas pesquisas têm sido realizadas no desenvolvimento de biomateriais aplicáveis na odontologia, este empenho é justificável pelo grande número de intervenções cirúrgicas para extração de dentes realizadas em todo o mundo. Durante o processo de fabricação de reconstruções dentárias, que utilizam sistemas metalocerâmicos, é utilizado um tratamento térmico que tem a função de promover a adesão da porcelana ao metal. Entretanto, sabe-se que tratamentos térmicos podem alterar a microestrutura do material metálico, modificando suas propriedades. Este trabalho avaliou as modificações causadas em propriedades mecânicas e microestruturais da liga à base de níquel (FIT CAST-SB) utilizada para fins odontológicos, quando a mesma é submetida ao tratamento térmico para adesão da porcelana (denominado de queima ). A liga foi inicialmente fundida através da técnica de centrifugação e cera perdida. Posteriormente, um grupo de amostras (grupo TT) foi submetido ao tratamento térmico de queima para adesão da porcelana e o outro grupo (grupo F), permaneceu apenas submetido ao processo de fundição. Os grupos F e TT foram submetidos a ensaio de tração. Nos grupos F e TT, e no material como recebido pelo fabricante (grupo CR), foram realizados ensaios de microdureza e caracterização microestrutural, esta ultima através da técnica de microscopia eletrônica de varredura (MEV). Os grupos F e CR foram submetidos à análise química quantitativa (em um espectrômetro de emissão atômica) e semi-quantitativa por um sistema de Energy Dispersive Spectroscopy (EDS) acoplado ao MEV, sendo que esta ultima técnica também foi aplicada ao grupo TT. A técnica de tratamento digital de imagem foi aplicada às micrografias dos grupos F e TT, para a determinação de possíveis modificações quantitativas nas fases presentes, antes e após o tratamento térmico. Todos os resultados dos ensaios foram submetidos ao teste de hipótese nula (H0), para a distribuição t de Student. Concluiu-se que, para as amostras testadas, o limite de resistência foi superior ao fornecido pelo fabricante, respectivamente 559,39 e 545,55 MPa para os grupos F e TT, contra 306 MPa do fabricante. Enquanto o limite de escoamento foi ligeiramente inferior, 218,71 e 240,58 MPa para os grupos F e TT, respectivamente, contra 258 MPa do fabricante. Os resultados de microdureza ficaram entorno de 70HV, superior aos 21HV fornecido pelo fabricante. Pode-se afirmar, com 95% de confiabilidade, que não houve variação nas propriedades mecânicas e na microestrutura (quantidades de fases presentes e tamanho) antes e após a queima para adesão da porcelana, para os corpos de prova testados. A microestrutura da liga, quando observada em MEV no modo elétrons retroespalhados (modo BSE), é formada por uma matriz de estrutura dendrítica e coloração cinza, uma segunda fase interdendrítica de coloração branca e aspecto rendilhado, e precipitados de coloração preta, apresentando também porosidades.Submitted by Boris Flegr (boris@uerj.br) on 2021-01-06T19:12:36Z No. of bitstreams: 7 Andre Rocha Pimenta Pt 1.pdf: 152959 bytes, checksum: 5aee5b1d025b3a1d3f14238b9f5b5d8b (MD5) Andre Rocha Pimenta Pt 2.pdf: 40816 bytes, checksum: 1ce6ff60a55605c551643031a3ecc135 (MD5) Andre Rocha Pimenta Pt 3.pdf: 1058654 bytes, checksum: 259c6f288104e55b1459595326b2df64 (MD5) Andre Rocha Pimenta Pt 4.pdf: 217115 bytes, checksum: 3d95458c03e111c48cf2ff7ef0e8c48a (MD5) Andre Rocha Pimenta Pt 5.pdf: 2308183 bytes, checksum: 5e6bd7d91108929b24b29cf268abc75b (MD5) Andre Rocha Pimenta Pt 6.pdf: 38095 bytes, checksum: 302019207954a958645ab61946b222fa (MD5) Andre Rocha Pimenta Pt 7.pdf: 101392 bytes, checksum: ccd77060171829d9b34d7a0064b0951d (MD5)Made available in DSpace on 2021-01-06T19:12:36Z (GMT). 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dc.title.por.fl_str_mv Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
dc.title.alternative.eng.fl_str_mv Influence of heat treatment on the mechanical and metallurgical properties in the dental alloy nickel-chromium.
title Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
spellingShingle Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
Pimenta, André Rocha
Nickel alloy
Biomaterials
Dental alloy
Porcelain firing
Ligas de níquel - Cromo
Biomaterial
Ligas odontológicas
Queima da porcelana
Metais-Tratamento térmico
CNPQ::ENGENHARIAS::ENGENHARIA CIVIL
title_short Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
title_full Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
title_fullStr Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
title_full_unstemmed Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
title_sort Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.
author Pimenta, André Rocha
author_facet Pimenta, André Rocha
author_role author
dc.contributor.advisor1.fl_str_mv Diniz, Marilia Garcia
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/6597447489234947
dc.contributor.referee1.fl_str_mv Soeiro, Francisco José da Cunha Pires
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/8690926504635230
dc.contributor.referee2.fl_str_mv Miranda, Mauro Sayão de
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/8200556328597202
dc.contributor.referee3.fl_str_mv Solórzano-naranjo, Ivan Guillermo
dc.contributor.referee3Lattes.fl_str_mv http://lattes.cnpq.br/2026158191882621
dc.contributor.referee4.fl_str_mv Borges, Lavínia Maria Sanabio Alves
dc.contributor.referee4Lattes.fl_str_mv http://lattes.cnpq.br/3996404436225621
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/2962103182860488
dc.contributor.author.fl_str_mv Pimenta, André Rocha
contributor_str_mv Diniz, Marilia Garcia
Soeiro, Francisco José da Cunha Pires
Miranda, Mauro Sayão de
Solórzano-naranjo, Ivan Guillermo
Borges, Lavínia Maria Sanabio Alves
dc.subject.eng.fl_str_mv Nickel alloy
Biomaterials
Dental alloy
Porcelain firing
topic Nickel alloy
Biomaterials
Dental alloy
Porcelain firing
Ligas de níquel - Cromo
Biomaterial
Ligas odontológicas
Queima da porcelana
Metais-Tratamento térmico
CNPQ::ENGENHARIAS::ENGENHARIA CIVIL
dc.subject.por.fl_str_mv Ligas de níquel - Cromo
Biomaterial
Ligas odontológicas
Queima da porcelana
Metais-Tratamento térmico
dc.subject.cnpq.fl_str_mv CNPQ::ENGENHARIAS::ENGENHARIA CIVIL
description There is a growing concern with the development of suitable materials for interactive working with the human body. Many searchs have been carried in the development of biomaterials for odontology applications and this dedication is justifiable for the large number of surgical interventions for tooth extractions in the entire world. During the manufacturing process of dental reconstructions, which use metal-ceramic systems, a heat treatment is used to promote adhesion of the porcelain in the metal. However, it is known that heat treatment can change the metallic materials microstructure, changing their properties. This work evaluated the mechanical properties and microstructural changing of the nickel base alloy (FIT CAST-SB) used in odontology, when the alloy is submitted to the heat treatment for the porcelain adhesion (demented of firing ). First the alloy was cast using the technical of centrifugation and lost-wax. After that, one samples group (TT group) was submitted for porcelain firing heat treatment and another group (F group), remained only cast. The F and TT groups were submitted to tensile test. The F and TT groups, and the material as received by the manufacturer (CR group), were submitted to microhardness test and microstructural characterization, this latter using scanning electron microscopic. The F and CR groups were submitted to quantitative chemical analysis (atomic emission spectroscopy) and semi-quantitative by Energy Dispersive Spectroscopy (EDS) in the MEV, and this last technique was applied to TT group too. The digital images process technique was applied to micrographics of F and TT groups, to determine the changes in the material phases before and after heat treatment. All results were submitted to the hypothesis test of Student s t-distribution. For the samples tested, it was concluded that the tensile strength was higher then the manufacturer information, respectively 559,39 and 545,55 MPa for F and TT groups, against 306 MPa informed by the manufacturer. However, the yield point was slightly lower, 218,81 and 240,58 MPa for F and TT groups, respectively, against 258 informed by the manufacturer. The microhardness results were about 70HV, higher than 21HV informed by the manufacturer. It was concluded, with 95% of confiability, that there was no mechanical properties and microstructure (percent and size of the phases) changes, before and after porcelain firing, in the specimens used. The alloy microstructure, when observed by scanning electron microscopy (SEM) in backscattered electron mode (BSE mode) is formed by a matrix with dendritc structure and gray color, a second phase interdendritc with white color and lacy appearance, and black precipitates, and porosity are also found.
publishDate 2009
dc.date.issued.fl_str_mv 2009-11-25
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dc.identifier.citation.fl_str_mv PIMENTA, André Rocha. Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.. 2009. 120 f. Dissertação (Mestrado em Fenômenos de transporte; Mecânica dos sólidos) - Universidade do Estado do Rio de Janeiro, Rio de Janeiro, 2009.
dc.identifier.uri.fl_str_mv http://www.bdtd.uerj.br/handle/1/11696
identifier_str_mv PIMENTA, André Rocha. Influência de tratamentos térmicos nas propriedades mecânicas e metalúrgicas em liga odontológica à base de níquel-cromo.. 2009. 120 f. Dissertação (Mestrado em Fenômenos de transporte; Mecânica dos sólidos) - Universidade do Estado do Rio de Janeiro, Rio de Janeiro, 2009.
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