Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex

Bibliographic Details
Main Author: Rezende, Stephania Capellari De
Publication Date: 2018
Format: Master thesis
Language: por
Source: Biblioteca Digital de Teses e Dissertações da UNIFAL
Download full: https://repositorio.unifal-mg.edu.br/handle/123456789/1255
Summary: Due to the great technological evolution that has occurred in several areas of knowledge, increasingly requires the constant search for materials that have a set of features that meet the particular application, an example is the oil area that needs a material that support adverse conditions for exploration of oil. As a solution to this company emerged the duplex stainless steels, which have a combination of good mechanical properties and corrosion resistance, combining high strength and toughness with corrosion, stress corrosion cracking and weldability. As a way of product improvement aiming at the need for the industry, this project aims to make a comparison between duplex stainless steel SAF 2205 with the molybdenum element (Mo) (steel A) in its composition and the duplex stainless steel without Mo (steel B). The microstructural characterization of both steels revealed a typical microstructure of a duplex stainless steel composed of the austenite phase () in the form of elongated islands dispersed in the ferritic matrix (), with the presence of chi phase precipitates only in solubilized steel A for 240 min. X-ray diffraction revealed the presence of this characteristic peak of chi phase in steel A solubilized for 240 min, besides the characteristic peaks of the ferrite and austenite phases in steels A and B in all conditions studied. Quantitative stereology showed that the percentage ferrite phase increased significantly with increasing heat treatment time in both steels. The cyclic potentiodynamic polarization analyzes revealed that the best condition was the solubilization condition for 120 min in both steels. The result of the PREN of the ferrite and austenite phases of the B steel was less than 30, which would classify it as a Lean duplex, however this result was influenced by the absence of molybdenum alloy element, being a duplex stainless steel.
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spelling Rezende, Stephania Capellari Dehttp://lattes.cnpq.br/0809795245116090Souza, Lucíola Lucena DeNakamatsu, SandraRamos, Erika Coaglia TrindadeMariano, Neide Aparecidahttp://lattes.cnpq.br/31937991763744342018-12-28T20:44:42Z2018-06-28REZENDE, Stephania Capellari de. Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex. 2018. 106 f. Dissertação (Mestrado em Ciência e Engenharia de Materiais) - Universidade Federal de Alfenas, Poços de Caldas, MG, 2018.https://repositorio.unifal-mg.edu.br/handle/123456789/1255Due to the great technological evolution that has occurred in several areas of knowledge, increasingly requires the constant search for materials that have a set of features that meet the particular application, an example is the oil area that needs a material that support adverse conditions for exploration of oil. As a solution to this company emerged the duplex stainless steels, which have a combination of good mechanical properties and corrosion resistance, combining high strength and toughness with corrosion, stress corrosion cracking and weldability. As a way of product improvement aiming at the need for the industry, this project aims to make a comparison between duplex stainless steel SAF 2205 with the molybdenum element (Mo) (steel A) in its composition and the duplex stainless steel without Mo (steel B). The microstructural characterization of both steels revealed a typical microstructure of a duplex stainless steel composed of the austenite phase () in the form of elongated islands dispersed in the ferritic matrix (), with the presence of chi phase precipitates only in solubilized steel A for 240 min. X-ray diffraction revealed the presence of this characteristic peak of chi phase in steel A solubilized for 240 min, besides the characteristic peaks of the ferrite and austenite phases in steels A and B in all conditions studied. Quantitative stereology showed that the percentage ferrite phase increased significantly with increasing heat treatment time in both steels. The cyclic potentiodynamic polarization analyzes revealed that the best condition was the solubilization condition for 120 min in both steels. The result of the PREN of the ferrite and austenite phases of the B steel was less than 30, which would classify it as a Lean duplex, however this result was influenced by the absence of molybdenum alloy element, being a duplex stainless steel.Devido à grande evolução tecnológica que vem ocorrendo em diversas áreas do conhecimento, cada vez mais exige-se a busca constante por materiais que possuem um conjunto de características que atendam a determinada aplicação, um exemplo é a área petrolífera que necessita de um material que suporte as condições adversas para a exploração de petróleo. Como solução para este seguimento surgiram os aços inoxidáveis duplex, que apresentam uma combinação de boas propriedades mecânicas e de resistência à corrosão, aliando alta resistência e tenacidade junto à corrosão, corrosão sob tensão e soldabilidade. Como forma de melhoramento do produto visando a necessidade para a indústria, este projeto teve como objetivo realizar uma comparação entre o aço inoxidável duplex SAF 2205 com molibdênio (Mo) (aço A) em sua composição e o aço inoxidável duplex SAF 2205 com Mo (aço B). A caracterização microestrutural de ambos os aços revelou uma microestrutura típica de um aço inoxidável duplex, composta pela fase austenita () em formato de ilhas alongadas dispersas na matriz ferrítica (), com a presença de precipitados de fase chi somente no aço A solubilizado por 240 min. A difração de raios X revelou a presença deste pico característico de fase chi no aço A solubilizado por 240 min, além dos picos característicos das fases ferrita e austenita nos aços A e B em todas as condições estudadas. A estereologia quantitativa mostrou que a % de fase ferrita aumentou significativamente com o aumento do tempo de tratamento térmico em ambos os aços. As análises de polarização potenciodinâmica cíclica revelaram que a melhor condição foi a solubilização por 120 min em ambos os aços. O resultado do PREN das fases ferrita e austenita do aço B foi inferior a 30, o que o classificaria como um Lean duplex, no entanto este resultado foi influenciado pela ausência do elemento de liga molibdênio, sendo o mesmo um aço inoxidável duplex.Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESapplication/pdfporUniversidade Federal de AlfenasPrograma de Pós-Graduação em Ciência e Engenharia de MateriaisUNIFAL-MGBrasilInstituto de Ciência e Tecnologiainfo:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by-nc-nd/4.0/Aço inoxidávelMolibdênioMicroestruturaAço - Tratamento térmicoAço - CorrosãoENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICAEstudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplexStudy of Mo in the microestructure and in the corrosion resistance in duplex stainless steelinfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/publishedVersion-4297417259498638931600600600-65375185333761334302075167498588264571reponame:Biblioteca Digital de Teses e Dissertações da UNIFALinstname:Universidade Federal de Alfenas (UNIFAL)instacron:UNIFALRezende, Stephania Capellari DeLICENSElicense.txtlicense.txttext/plain; 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dc.title.pt-BR.fl_str_mv Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
dc.title.alternative.eng.fl_str_mv Study of Mo in the microestructure and in the corrosion resistance in duplex stainless steel
title Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
spellingShingle Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
Rezende, Stephania Capellari De
Aço inoxidável
Molibdênio
Microestrutura
Aço - Tratamento térmico
Aço - Corrosão
ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA
title_short Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
title_full Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
title_fullStr Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
title_full_unstemmed Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
title_sort Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex
author Rezende, Stephania Capellari De
author_facet Rezende, Stephania Capellari De
author_role author
dc.contributor.author.fl_str_mv Rezende, Stephania Capellari De
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/0809795245116090
dc.contributor.advisor-co1.fl_str_mv Souza, Lucíola Lucena De
dc.contributor.referee1.fl_str_mv Nakamatsu, Sandra
dc.contributor.referee2.fl_str_mv Ramos, Erika Coaglia Trindade
dc.contributor.advisor1.fl_str_mv Mariano, Neide Aparecida
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/3193799176374434
contributor_str_mv Souza, Lucíola Lucena De
Nakamatsu, Sandra
Ramos, Erika Coaglia Trindade
Mariano, Neide Aparecida
dc.subject.por.fl_str_mv Aço inoxidável
Molibdênio
Microestrutura
Aço - Tratamento térmico
Aço - Corrosão
topic Aço inoxidável
Molibdênio
Microestrutura
Aço - Tratamento térmico
Aço - Corrosão
ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA
dc.subject.cnpq.fl_str_mv ENGENHARIAS::ENGENHARIA DE MATERIAIS E METALURGICA
description Due to the great technological evolution that has occurred in several areas of knowledge, increasingly requires the constant search for materials that have a set of features that meet the particular application, an example is the oil area that needs a material that support adverse conditions for exploration of oil. As a solution to this company emerged the duplex stainless steels, which have a combination of good mechanical properties and corrosion resistance, combining high strength and toughness with corrosion, stress corrosion cracking and weldability. As a way of product improvement aiming at the need for the industry, this project aims to make a comparison between duplex stainless steel SAF 2205 with the molybdenum element (Mo) (steel A) in its composition and the duplex stainless steel without Mo (steel B). The microstructural characterization of both steels revealed a typical microstructure of a duplex stainless steel composed of the austenite phase () in the form of elongated islands dispersed in the ferritic matrix (), with the presence of chi phase precipitates only in solubilized steel A for 240 min. X-ray diffraction revealed the presence of this characteristic peak of chi phase in steel A solubilized for 240 min, besides the characteristic peaks of the ferrite and austenite phases in steels A and B in all conditions studied. Quantitative stereology showed that the percentage ferrite phase increased significantly with increasing heat treatment time in both steels. The cyclic potentiodynamic polarization analyzes revealed that the best condition was the solubilization condition for 120 min in both steels. The result of the PREN of the ferrite and austenite phases of the B steel was less than 30, which would classify it as a Lean duplex, however this result was influenced by the absence of molybdenum alloy element, being a duplex stainless steel.
publishDate 2018
dc.date.accessioned.fl_str_mv 2018-12-28T20:44:42Z
dc.date.issued.fl_str_mv 2018-06-28
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
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dc.identifier.citation.fl_str_mv REZENDE, Stephania Capellari de. Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex. 2018. 106 f. Dissertação (Mestrado em Ciência e Engenharia de Materiais) - Universidade Federal de Alfenas, Poços de Caldas, MG, 2018.
dc.identifier.uri.fl_str_mv https://repositorio.unifal-mg.edu.br/handle/123456789/1255
identifier_str_mv REZENDE, Stephania Capellari de. Estudo do Mo na microestrutura e na resistência à corrosão em aço inoxidável duplex. 2018. 106 f. Dissertação (Mestrado em Ciência e Engenharia de Materiais) - Universidade Federal de Alfenas, Poços de Caldas, MG, 2018.
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