Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings

Detalhes bibliográficos
Autor(a) principal: Cunha,Cecilio Alvares da
Data de Publicação: 2008
Outros Autores: Lima,Nelson Batista de, Martinelli,Jose Roberto, Bressiani,Ana Helena de Almeida, Padial,Armando Guilherme Fernando, Ramanathan,Lalgudi Venkataraman
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Materials research (São Carlos. Online)
Texto Completo: http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392008000200005
Resumo: Cr3C2-Ni20Cr coatings have been used for corrosion and wear resistant applications. However, one of the shortcomings of these coatings is its low hardness, and consequent low wear resistance, for long term high temperature applications. Nanostructured coatings of many materials have exhibited higher hardness and strength compared with conventional coatings of the same material. Consequently, nanostructured coatings of other materials, including Cr3C2-Ni20Cr have been attempted to enhance overall performance. In this study the effects of high energy milling parameters on Cr3C2-25(Ni20Cr) powder characteristics as well as the microstructure and mechanical properties of nanostructured Cr3C2-25(Ni20Cr) coatings formed by high velocity oxygen fuel (HVOF) spraying have been evaluated. The average particle size and crystallite size of milled Cr3C2-25(Ni20Cr) powders decreased with increase in milling time and this decrease was more pronounced in nitrogen compared to that in hexane. This difference has been attributed to a cushioning effect in the latter medium. The coatings prepared with milled Cr3C2-25(Ni20Cr) powders had a more uniform microstructure, were harder and had higher relative fracture toughness compared with coatings prepared with as-received powders.
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spelling Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatingsChromium carbidenanostructured coatingmechanical millingthermal sprayingCr3C2-Ni20Cr coatings have been used for corrosion and wear resistant applications. However, one of the shortcomings of these coatings is its low hardness, and consequent low wear resistance, for long term high temperature applications. Nanostructured coatings of many materials have exhibited higher hardness and strength compared with conventional coatings of the same material. Consequently, nanostructured coatings of other materials, including Cr3C2-Ni20Cr have been attempted to enhance overall performance. In this study the effects of high energy milling parameters on Cr3C2-25(Ni20Cr) powder characteristics as well as the microstructure and mechanical properties of nanostructured Cr3C2-25(Ni20Cr) coatings formed by high velocity oxygen fuel (HVOF) spraying have been evaluated. The average particle size and crystallite size of milled Cr3C2-25(Ni20Cr) powders decreased with increase in milling time and this decrease was more pronounced in nitrogen compared to that in hexane. This difference has been attributed to a cushioning effect in the latter medium. The coatings prepared with milled Cr3C2-25(Ni20Cr) powders had a more uniform microstructure, were harder and had higher relative fracture toughness compared with coatings prepared with as-received powders.ABM, ABC, ABPol2008-06-01info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersiontext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392008000200005Materials Research v.11 n.2 2008reponame:Materials research (São Carlos. Online)instname:Universidade Federal de São Carlos (UFSCAR)instacron:ABM ABC ABPOL10.1590/S1516-14392008000200005info:eu-repo/semantics/openAccessCunha,Cecilio Alvares daLima,Nelson Batista deMartinelli,Jose RobertoBressiani,Ana Helena de AlmeidaPadial,Armando Guilherme FernandoRamanathan,Lalgudi Venkataramaneng2008-07-16T00:00:00Zoai:scielo:S1516-14392008000200005Revistahttp://www.scielo.br/mrPUBhttps://old.scielo.br/oai/scielo-oai.phpdedz@power.ufscar.br1980-53731516-1439opendoar:2008-07-16T00:00Materials research (São Carlos. Online) - Universidade Federal de São Carlos (UFSCAR)false
dc.title.none.fl_str_mv Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
title Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
spellingShingle Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
Cunha,Cecilio Alvares da
Chromium carbide
nanostructured coating
mechanical milling
thermal spraying
title_short Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
title_full Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
title_fullStr Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
title_full_unstemmed Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
title_sort Microstructure and mechanical properties of thermal sprayed nanostructured Cr3C2-Ni20Cr coatings
author Cunha,Cecilio Alvares da
author_facet Cunha,Cecilio Alvares da
Lima,Nelson Batista de
Martinelli,Jose Roberto
Bressiani,Ana Helena de Almeida
Padial,Armando Guilherme Fernando
Ramanathan,Lalgudi Venkataraman
author_role author
author2 Lima,Nelson Batista de
Martinelli,Jose Roberto
Bressiani,Ana Helena de Almeida
Padial,Armando Guilherme Fernando
Ramanathan,Lalgudi Venkataraman
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Cunha,Cecilio Alvares da
Lima,Nelson Batista de
Martinelli,Jose Roberto
Bressiani,Ana Helena de Almeida
Padial,Armando Guilherme Fernando
Ramanathan,Lalgudi Venkataraman
dc.subject.por.fl_str_mv Chromium carbide
nanostructured coating
mechanical milling
thermal spraying
topic Chromium carbide
nanostructured coating
mechanical milling
thermal spraying
description Cr3C2-Ni20Cr coatings have been used for corrosion and wear resistant applications. However, one of the shortcomings of these coatings is its low hardness, and consequent low wear resistance, for long term high temperature applications. Nanostructured coatings of many materials have exhibited higher hardness and strength compared with conventional coatings of the same material. Consequently, nanostructured coatings of other materials, including Cr3C2-Ni20Cr have been attempted to enhance overall performance. In this study the effects of high energy milling parameters on Cr3C2-25(Ni20Cr) powder characteristics as well as the microstructure and mechanical properties of nanostructured Cr3C2-25(Ni20Cr) coatings formed by high velocity oxygen fuel (HVOF) spraying have been evaluated. The average particle size and crystallite size of milled Cr3C2-25(Ni20Cr) powders decreased with increase in milling time and this decrease was more pronounced in nitrogen compared to that in hexane. This difference has been attributed to a cushioning effect in the latter medium. The coatings prepared with milled Cr3C2-25(Ni20Cr) powders had a more uniform microstructure, were harder and had higher relative fracture toughness compared with coatings prepared with as-received powders.
publishDate 2008
dc.date.none.fl_str_mv 2008-06-01
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392008000200005
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392008000200005
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 10.1590/S1516-14392008000200005
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv text/html
dc.publisher.none.fl_str_mv ABM, ABC, ABPol
publisher.none.fl_str_mv ABM, ABC, ABPol
dc.source.none.fl_str_mv Materials Research v.11 n.2 2008
reponame:Materials research (São Carlos. Online)
instname:Universidade Federal de São Carlos (UFSCAR)
instacron:ABM ABC ABPOL
instname_str Universidade Federal de São Carlos (UFSCAR)
instacron_str ABM ABC ABPOL
institution ABM ABC ABPOL
reponame_str Materials research (São Carlos. Online)
collection Materials research (São Carlos. Online)
repository.name.fl_str_mv Materials research (São Carlos. Online) - Universidade Federal de São Carlos (UFSCAR)
repository.mail.fl_str_mv dedz@power.ufscar.br
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