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Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva

Fe–Al intermetallic compounds have been considered excellent candidates as alternative alloys for various applications in corrosive environments compared to other Fe-based alloys. Their excellent corrosion resistance is due to the development of an Al-based passive layer. The performance of the pass...

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Autores principales: Arrieta-Gonzalez, Cinthya Dinorah, Rodriguez-Diaz, Roberto Ademar, Mayen, Jan, Retes-Mantilla, Rogel Fernando, Torres-Mancera, María Teresa, Oros-Méndez, Lya Adlih, Cruz-Mejía, Héctor, Flores-Garcia, Nestor Starlin, Porcayo-Calderon, Jesús
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084964/
https://www.ncbi.nlm.nih.gov/pubmed/32121593
http://dx.doi.org/10.3390/ma13051095
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author Arrieta-Gonzalez, Cinthya Dinorah
Rodriguez-Diaz, Roberto Ademar
Mayen, Jan
Retes-Mantilla, Rogel Fernando
Torres-Mancera, María Teresa
Oros-Méndez, Lya Adlih
Cruz-Mejía, Héctor
Flores-Garcia, Nestor Starlin
Porcayo-Calderon, Jesús
author_facet Arrieta-Gonzalez, Cinthya Dinorah
Rodriguez-Diaz, Roberto Ademar
Mayen, Jan
Retes-Mantilla, Rogel Fernando
Torres-Mancera, María Teresa
Oros-Méndez, Lya Adlih
Cruz-Mejía, Héctor
Flores-Garcia, Nestor Starlin
Porcayo-Calderon, Jesús
author_sort Arrieta-Gonzalez, Cinthya Dinorah
collection PubMed
description Fe–Al intermetallic compounds have been considered excellent candidates as alternative alloys for various applications in corrosive environments compared to other Fe-based alloys. Their excellent corrosion resistance is due to the development of an Al-based passive layer. The performance of the passive layer can be improved by adding a third alloy element. Therefore, in this study the electrochemical performance of the Fe40Al intermetallic alloy modified by the addition of a third alloy element (Cr, Ti, Co, Ni) is evaluated. The corrosion resistance of intermetallic alloys has been evaluated by electrochemical tests (potentiodynamic polarization curves, and measurements of open circuit potential, linear polarization and electrochemical impedance) in artificial saliva. The performance of intermetallic alloys was compared with that of Ti. The results obtained showed that the addition of Ni and Ti substantially improves the corrosion resistance of the base intermetallic. The corrosion resistance shown is comparable or greater than that shown by Ti. However, the addition of Co reduces the corrosion resistance of the base intermetallic.
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spelling pubmed-70849642020-03-23 Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva Arrieta-Gonzalez, Cinthya Dinorah Rodriguez-Diaz, Roberto Ademar Mayen, Jan Retes-Mantilla, Rogel Fernando Torres-Mancera, María Teresa Oros-Méndez, Lya Adlih Cruz-Mejía, Héctor Flores-Garcia, Nestor Starlin Porcayo-Calderon, Jesús Materials (Basel) Article Fe–Al intermetallic compounds have been considered excellent candidates as alternative alloys for various applications in corrosive environments compared to other Fe-based alloys. Their excellent corrosion resistance is due to the development of an Al-based passive layer. The performance of the passive layer can be improved by adding a third alloy element. Therefore, in this study the electrochemical performance of the Fe40Al intermetallic alloy modified by the addition of a third alloy element (Cr, Ti, Co, Ni) is evaluated. The corrosion resistance of intermetallic alloys has been evaluated by electrochemical tests (potentiodynamic polarization curves, and measurements of open circuit potential, linear polarization and electrochemical impedance) in artificial saliva. The performance of intermetallic alloys was compared with that of Ti. The results obtained showed that the addition of Ni and Ti substantially improves the corrosion resistance of the base intermetallic. The corrosion resistance shown is comparable or greater than that shown by Ti. However, the addition of Co reduces the corrosion resistance of the base intermetallic. MDPI 2020-03-01 /pmc/articles/PMC7084964/ /pubmed/32121593 http://dx.doi.org/10.3390/ma13051095 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Arrieta-Gonzalez, Cinthya Dinorah
Rodriguez-Diaz, Roberto Ademar
Mayen, Jan
Retes-Mantilla, Rogel Fernando
Torres-Mancera, María Teresa
Oros-Méndez, Lya Adlih
Cruz-Mejía, Héctor
Flores-Garcia, Nestor Starlin
Porcayo-Calderon, Jesús
Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title_full Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title_fullStr Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title_full_unstemmed Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title_short Electrochemical Performance of Fe40Al-X (X = Cr, Ti, Co, Ni) Alloys Exposed to Artificial Saliva
title_sort electrochemical performance of fe40al-x (x = cr, ti, co, ni) alloys exposed to artificial saliva
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084964/
https://www.ncbi.nlm.nih.gov/pubmed/32121593
http://dx.doi.org/10.3390/ma13051095
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