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Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis

To analyze the effect of lithium and microstructure on the pitting corrosion behavior of aluminum alloys, three types of aluminum alloys were studied via scanning electron microscopy, transmission electron microscopy, electrochemical polarization, and by immersion tests coupled with in-situ observat...

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Autores principales: Lei, Xiaowei, Saatchi, Alireza, Ghanbari, Elmira, Dang, Runze, Li, Wenzhe, Wang, Nan, Macdonald, Digby D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6567066/
https://www.ncbi.nlm.nih.gov/pubmed/31100787
http://dx.doi.org/10.3390/ma12101600
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author Lei, Xiaowei
Saatchi, Alireza
Ghanbari, Elmira
Dang, Runze
Li, Wenzhe
Wang, Nan
Macdonald, Digby D.
author_facet Lei, Xiaowei
Saatchi, Alireza
Ghanbari, Elmira
Dang, Runze
Li, Wenzhe
Wang, Nan
Macdonald, Digby D.
author_sort Lei, Xiaowei
collection PubMed
description To analyze the effect of lithium and microstructure on the pitting corrosion behavior of aluminum alloys, three types of aluminum alloys were studied via scanning electron microscopy, transmission electron microscopy, electrochemical polarization, and by immersion tests coupled with in-situ observation of pitting and statistical analysis of pit depths measured by surface profilometry. It was found that, with increasing lithium content, the resistance to pitting corrosion was enhanced and the passive range was enlarged. In-situ observation revealed that the development of pitting corrosion exhibited three stages, including an initial slow nucleation stage (Stage I), a fast development stage (Stage II), and a stabilized growth stage (Stage III). Higher lithium content contributed to shorter time periods of Stages I and II, resulting in faster pitting evolution and a higher number of pits. However, the pits were generally shallower for the specimen with the highest lithium content, which is in agreement with the results of the electrochemical analysis.
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spelling pubmed-65670662019-06-17 Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis Lei, Xiaowei Saatchi, Alireza Ghanbari, Elmira Dang, Runze Li, Wenzhe Wang, Nan Macdonald, Digby D. Materials (Basel) Article To analyze the effect of lithium and microstructure on the pitting corrosion behavior of aluminum alloys, three types of aluminum alloys were studied via scanning electron microscopy, transmission electron microscopy, electrochemical polarization, and by immersion tests coupled with in-situ observation of pitting and statistical analysis of pit depths measured by surface profilometry. It was found that, with increasing lithium content, the resistance to pitting corrosion was enhanced and the passive range was enlarged. In-situ observation revealed that the development of pitting corrosion exhibited three stages, including an initial slow nucleation stage (Stage I), a fast development stage (Stage II), and a stabilized growth stage (Stage III). Higher lithium content contributed to shorter time periods of Stages I and II, resulting in faster pitting evolution and a higher number of pits. However, the pits were generally shallower for the specimen with the highest lithium content, which is in agreement with the results of the electrochemical analysis. MDPI 2019-05-16 /pmc/articles/PMC6567066/ /pubmed/31100787 http://dx.doi.org/10.3390/ma12101600 Text en © 2019 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
Lei, Xiaowei
Saatchi, Alireza
Ghanbari, Elmira
Dang, Runze
Li, Wenzhe
Wang, Nan
Macdonald, Digby D.
Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title_full Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title_fullStr Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title_full_unstemmed Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title_short Studies on Pitting Corrosion of Al-Cu-Li Alloys Part I: Effect of Li Addition by Microstructural, Electrochemical, In-situ, and Pit Depth Analysis
title_sort studies on pitting corrosion of al-cu-li alloys part i: effect of li addition by microstructural, electrochemical, in-situ, and pit depth analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6567066/
https://www.ncbi.nlm.nih.gov/pubmed/31100787
http://dx.doi.org/10.3390/ma12101600
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