Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings

Nickel-based alloy IN 625 is used to protect components of aircrafts, power generation and oil refinery due to an association of toughness and high corrosion resistance. These properties are associated with the chemical composition and microstructure of coatings which depend on the processing parame...

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Main Authors: Tiago Jose Antoszczyszyn, Rodrigo Metz Gabriel Paes, Ana Sofia Clímaco Monteiro de Oliveira, Adriano Scheid
Format: Article
Language:English
Published: Associação Brasileira de Soldagem 2014-06-01
Series:Soldagem & Inspeção
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-92242014000200005&lng=en&tlng=en
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spelling doaj-54b54195092446bb90b6d86a051ebc862020-11-24T21:18:21ZengAssociação Brasileira de SoldagemSoldagem & Inspeção1980-69732014-06-0119213414410.1590/0104-9224/SI1902.05S0104-92242014000200005Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatingsTiago Jose Antoszczyszyn0Rodrigo Metz Gabriel Paes1Ana Sofia Clímaco Monteiro de Oliveira2Adriano Scheid3Universidade Federal do ParanáUniversidade Federal do ParanáUniversidade Federal do ParanáUniversidade Federal do ParanáNickel-based alloy IN 625 is used to protect components of aircrafts, power generation and oil refinery due to an association of toughness and high corrosion resistance. These properties are associated with the chemical composition and microstructure of coatings which depend on the processing parameters and the composition of the component being protected. This paper assessed impact of dilution on the microstructure and properties of the Ni alloy IN 625 deposited by Plasma Transferred Arc (PTA) on two substrates: carbon steel API 5L and stainless steel AISI 316L. Differences due to the interaction with the substrate were maximized analyzing single layer coatings, processed with three deposition current: 120, 150 and 180 A. Correlation with a cast Nickel-based alloy sample contributed to assess the impact of dilution on coatings. Dilution was determined by the area ratio and Vickers hardness measured on the transverse section of coatings. Scanning electron and Laser confocal microscopy and X-ray diffraction analysis were carried out to characterize the microstructure. Results indicated the increasing dilution with the deposition current was deeply influenced by the substrate. Dilution ranging from 5 to 29% was measured on coatings processed on the API 5L steel and from 22 to 51% on the low thermal conductivity AISI 316L steel substrate. Differences on the microstructure and properties of coatings can be associated with the interaction with each substrate. Higher fraction of carbides account for the higher coating hardness when processing on API 5L whereas the low thermal conductivity of AISI 316L and the higher Fe content in solid solution contributed to the lower hardness of coatings.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-92242014000200005&lng=en&tlng=enPlasma com Arco Transferido (PTA) Liga de NíquelLiga 625Relação Microestrutura-Propriedades
collection DOAJ
language English
format Article
sources DOAJ
author Tiago Jose Antoszczyszyn
Rodrigo Metz Gabriel Paes
Ana Sofia Clímaco Monteiro de Oliveira
Adriano Scheid
spellingShingle Tiago Jose Antoszczyszyn
Rodrigo Metz Gabriel Paes
Ana Sofia Clímaco Monteiro de Oliveira
Adriano Scheid
Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
Soldagem & Inspeção
Plasma com Arco Transferido (PTA) Liga de Níquel
Liga 625
Relação Microestrutura-Propriedades
author_facet Tiago Jose Antoszczyszyn
Rodrigo Metz Gabriel Paes
Ana Sofia Clímaco Monteiro de Oliveira
Adriano Scheid
author_sort Tiago Jose Antoszczyszyn
title Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
title_short Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
title_full Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
title_fullStr Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
title_full_unstemmed Impact of dilution on the microstructure and properties of Ni-based 625 alloy coatings
title_sort impact of dilution on the microstructure and properties of ni-based 625 alloy coatings
publisher Associação Brasileira de Soldagem
series Soldagem & Inspeção
issn 1980-6973
publishDate 2014-06-01
description Nickel-based alloy IN 625 is used to protect components of aircrafts, power generation and oil refinery due to an association of toughness and high corrosion resistance. These properties are associated with the chemical composition and microstructure of coatings which depend on the processing parameters and the composition of the component being protected. This paper assessed impact of dilution on the microstructure and properties of the Ni alloy IN 625 deposited by Plasma Transferred Arc (PTA) on two substrates: carbon steel API 5L and stainless steel AISI 316L. Differences due to the interaction with the substrate were maximized analyzing single layer coatings, processed with three deposition current: 120, 150 and 180 A. Correlation with a cast Nickel-based alloy sample contributed to assess the impact of dilution on coatings. Dilution was determined by the area ratio and Vickers hardness measured on the transverse section of coatings. Scanning electron and Laser confocal microscopy and X-ray diffraction analysis were carried out to characterize the microstructure. Results indicated the increasing dilution with the deposition current was deeply influenced by the substrate. Dilution ranging from 5 to 29% was measured on coatings processed on the API 5L steel and from 22 to 51% on the low thermal conductivity AISI 316L steel substrate. Differences on the microstructure and properties of coatings can be associated with the interaction with each substrate. Higher fraction of carbides account for the higher coating hardness when processing on API 5L whereas the low thermal conductivity of AISI 316L and the higher Fe content in solid solution contributed to the lower hardness of coatings.
topic Plasma com Arco Transferido (PTA) Liga de Níquel
Liga 625
Relação Microestrutura-Propriedades
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-92242014000200005&lng=en&tlng=en
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