Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components

Detalhes bibliográficos
Autor(a) principal: Sartori, Ivete Aparecida de Mattias
Data de Publicação: 2013
Outros Autores: Ramos, Carla Müller, Faot, Fernanda, da Silva, Luciano Monteiro, Valgas, Laiz, Borges, Ana Flávia Sanches
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Brazilian Dental Science
Texto Completo: https://ojs.ict.unesp.br/index.php/cob/article/view/863
Resumo: Purpose: The aim of this study was to evaluate the tensile and hardness mechanical properties, as well as the composition and microstructure of three different alloys used for implant prosthestic components casting. Methods: The alloys were divided into three groups: Tilite (Tilite), Vera (Verabond) and Malloy (DanCeramalloy). For the tensile test, the specimens (n=10) of each group were evaluated in “alter” form and the maximum load fracture, the deformation at maximum load and Young´s modulus were determined.  The data was subjected to one way ANOVA and Turkey’s test.  For the hardness test, five discs from each group were evaluated for Vickers hardness. The data was analyzed using multiple regression ANOVA followed by the Turkey’s test. The significance level was set at 5% (? = 0.05). The composition and microstructure was determined through analysis of two specimens from each group by metallographic analysis (MEV/EED). Results: With regards to maximum load tensile, the deformation and the Young´s Modulus the three alloys evaluated were statistically similar. Regarding hardness, Tilite showed significant higher values than the others alloys. Conclusion: All the examined alloys can be used in implant prosthetic components and the presence of the element Ti did not influence the mechanical behavior of the alloy.
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spelling Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic componentsPurpose: The aim of this study was to evaluate the tensile and hardness mechanical properties, as well as the composition and microstructure of three different alloys used for implant prosthestic components casting. Methods: The alloys were divided into three groups: Tilite (Tilite), Vera (Verabond) and Malloy (DanCeramalloy). For the tensile test, the specimens (n=10) of each group were evaluated in “alter” form and the maximum load fracture, the deformation at maximum load and Young´s modulus were determined.  The data was subjected to one way ANOVA and Turkey’s test.  For the hardness test, five discs from each group were evaluated for Vickers hardness. The data was analyzed using multiple regression ANOVA followed by the Turkey’s test. The significance level was set at 5% (? = 0.05). The composition and microstructure was determined through analysis of two specimens from each group by metallographic analysis (MEV/EED). Results: With regards to maximum load tensile, the deformation and the Young´s Modulus the three alloys evaluated were statistically similar. Regarding hardness, Tilite showed significant higher values than the others alloys. Conclusion: All the examined alloys can be used in implant prosthetic components and the presence of the element Ti did not influence the mechanical behavior of the alloy.Institute of Science and Technology of São José dos Campos2013-06-21info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffimage/tiffapplication/pdfhttps://ojs.ict.unesp.br/index.php/cob/article/view/86310.14295/bds.2013.v16i2.863Brazilian Dental Science; Vol. 16 No. 2 (2013): Apr. - Jun. / 2013 - Published June 2013; 37-43Brazilian Dental Science; v. 16 n. 2 (2013): Apr. - Jun. / 2013 - Published June 2013; 37-432178-6011reponame:Brazilian Dental Scienceinstname:Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP)instacron:UNESPenghttps://ojs.ict.unesp.br/index.php/cob/article/view/863/803https://ojs.ict.unesp.br/index.php/cob/article/view/863/1803https://ojs.ict.unesp.br/index.php/cob/article/view/863/1804https://ojs.ict.unesp.br/index.php/cob/article/view/863/1805https://ojs.ict.unesp.br/index.php/cob/article/view/863/1806https://ojs.ict.unesp.br/index.php/cob/article/view/863/1807https://ojs.ict.unesp.br/index.php/cob/article/view/863/1808https://ojs.ict.unesp.br/index.php/cob/article/view/863/1809https://ojs.ict.unesp.br/index.php/cob/article/view/863/1810https://ojs.ict.unesp.br/index.php/cob/article/view/863/1811https://ojs.ict.unesp.br/index.php/cob/article/view/863/1812https://ojs.ict.unesp.br/index.php/cob/article/view/863/1813Sartori, Ivete Aparecida de MattiasRamos, Carla MüllerFaot, Fernandada Silva, Luciano MonteiroValgas, LaizBorges, Ana Flávia Sanchesinfo:eu-repo/semantics/openAccess2020-01-28T12:37:06Zoai:ojs.pkp.sfu.ca:article/863Revistahttp://bds.ict.unesp.br/PUBhttp://ojs.fosjc.unesp.br/index.php/index/oaisergio@fosjc.unesp.br||sergio@fosjc.unesp.br2178-60112178-6011opendoar:2022-11-08T16:29:52.600623Brazilian Dental Science - Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP)true
dc.title.none.fl_str_mv Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
title Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
spellingShingle Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
Sartori, Ivete Aparecida de Mattias
title_short Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
title_full Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
title_fullStr Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
title_full_unstemmed Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
title_sort Mechanical behavior of NiCr and NiCrTi alloys for implant prosthetic components
author Sartori, Ivete Aparecida de Mattias
author_facet Sartori, Ivete Aparecida de Mattias
Ramos, Carla Müller
Faot, Fernanda
da Silva, Luciano Monteiro
Valgas, Laiz
Borges, Ana Flávia Sanches
author_role author
author2 Ramos, Carla Müller
Faot, Fernanda
da Silva, Luciano Monteiro
Valgas, Laiz
Borges, Ana Flávia Sanches
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Sartori, Ivete Aparecida de Mattias
Ramos, Carla Müller
Faot, Fernanda
da Silva, Luciano Monteiro
Valgas, Laiz
Borges, Ana Flávia Sanches
description Purpose: The aim of this study was to evaluate the tensile and hardness mechanical properties, as well as the composition and microstructure of three different alloys used for implant prosthestic components casting. Methods: The alloys were divided into three groups: Tilite (Tilite), Vera (Verabond) and Malloy (DanCeramalloy). For the tensile test, the specimens (n=10) of each group were evaluated in “alter” form and the maximum load fracture, the deformation at maximum load and Young´s modulus were determined.  The data was subjected to one way ANOVA and Turkey’s test.  For the hardness test, five discs from each group were evaluated for Vickers hardness. The data was analyzed using multiple regression ANOVA followed by the Turkey’s test. The significance level was set at 5% (? = 0.05). The composition and microstructure was determined through analysis of two specimens from each group by metallographic analysis (MEV/EED). Results: With regards to maximum load tensile, the deformation and the Young´s Modulus the three alloys evaluated were statistically similar. Regarding hardness, Tilite showed significant higher values than the others alloys. Conclusion: All the examined alloys can be used in implant prosthetic components and the presence of the element Ti did not influence the mechanical behavior of the alloy.
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dc.publisher.none.fl_str_mv Institute of Science and Technology of São José dos Campos
publisher.none.fl_str_mv Institute of Science and Technology of São José dos Campos
dc.source.none.fl_str_mv Brazilian Dental Science; Vol. 16 No. 2 (2013): Apr. - Jun. / 2013 - Published June 2013; 37-43
Brazilian Dental Science; v. 16 n. 2 (2013): Apr. - Jun. / 2013 - Published June 2013; 37-43
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repository.name.fl_str_mv Brazilian Dental Science - Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP)
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