Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface

In order to improve the corrosion resistance of magnesium alloy wheel hub, a low - cost, environmentally friendly and corrosion - resistant conversion coating was prepared on the surface of magnesium alloy wheel hub. The effects of subsequent densification temperature and time on the morphology and...

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Main Author: HE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min
Format: Article
Language:zho
Published: Editorial Department of Materials Protection 2021-03-01
Series:Cailiao Baohu
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Online Access:http://www.mat-pro.com/fileup/1001-1560/PDF/20210320.pdf
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author HE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min
author_facet HE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min
author_sort HE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min
collection DOAJ
description In order to improve the corrosion resistance of magnesium alloy wheel hub, a low - cost, environmentally friendly and corrosion - resistant conversion coating was prepared on the surface of magnesium alloy wheel hub. The effects of subsequent densification temperature and time on the morphology and electrochemical properties of cerium conversion film on Mg - 5.2Al - 0.5Mn - 1.8Ca alloy were investigated by SEM, EDS and electrochemical workstation. Results showed that the corrosion potential of the conversion film after phosphate densification treatment moved forward, the corrosion current density decreased and the polarization resistance increased, therefore, the corrosion resistance of the conversion film was enhanced. The corrosion resistance of the conversion film was the best when the densification temperature was 85 ℃. With the extension of the densification time, the corrosion potential of the conversion film first moved forward and then moved negatively, the corrosion current density first increased and then decreased, and polarization resistance first increased and then decreased. When the densification time was 60 s, the corrosion potential of the conversion film was the most positive, the corrosion current density was the smallest, and the polarization resistance was the largest, which showed the best corrosion resistance. The corrosion resistance of the original conversion film before densification treatment was mainly related to the surface cracks and the structure of the conversion film, the corrosion resistance of the conversion film after densification treatment was mainly related to the newly formed dense CePO4 film. When the densification temperature was 85 ℃ and the densification time was 60 s, the conversion film had the best corrosion resistance.
format Article
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institution OA Journals
issn 1001-1560
language zho
publishDate 2021-03-01
publisher Editorial Department of Materials Protection
record_format Article
series Cailiao Baohu
spelling doaj-art-c7b5d8f8f4564ae7a86f462931a210152025-08-20T02:36:06ZzhoEditorial Department of Materials ProtectionCailiao Baohu1001-15602021-03-0154311312010.16577/j.cnki.42-1215/tb.2021.03.020Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs SurfaceHE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min0(1.Department of Mechanical and Electrical Engineering, Zhumadian Vocational and Technical College, Zhumadian 463000, China;2. School of Traffic Engineering and Vehicle Engineering, Henan Institute of Technology, Xinxiang 453000, China;3. School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China)In order to improve the corrosion resistance of magnesium alloy wheel hub, a low - cost, environmentally friendly and corrosion - resistant conversion coating was prepared on the surface of magnesium alloy wheel hub. The effects of subsequent densification temperature and time on the morphology and electrochemical properties of cerium conversion film on Mg - 5.2Al - 0.5Mn - 1.8Ca alloy were investigated by SEM, EDS and electrochemical workstation. Results showed that the corrosion potential of the conversion film after phosphate densification treatment moved forward, the corrosion current density decreased and the polarization resistance increased, therefore, the corrosion resistance of the conversion film was enhanced. The corrosion resistance of the conversion film was the best when the densification temperature was 85 ℃. With the extension of the densification time, the corrosion potential of the conversion film first moved forward and then moved negatively, the corrosion current density first increased and then decreased, and polarization resistance first increased and then decreased. When the densification time was 60 s, the corrosion potential of the conversion film was the most positive, the corrosion current density was the smallest, and the polarization resistance was the largest, which showed the best corrosion resistance. The corrosion resistance of the original conversion film before densification treatment was mainly related to the surface cracks and the structure of the conversion film, the corrosion resistance of the conversion film after densification treatment was mainly related to the newly formed dense CePO4 film. When the densification temperature was 85 ℃ and the densification time was 60 s, the conversion film had the best corrosion resistance.http://www.mat-pro.com/fileup/1001-1560/PDF/20210320.pdfmagnesium alloy; cerium conversion coating; densification temperature; densification time; corrosion resistance
spellingShingle HE Wei - li, ZHANG Qing - feng, SUI Li - ming, LUO Xin - min
Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
Cailiao Baohu
magnesium alloy; cerium conversion coating; densification temperature; densification time; corrosion resistance
title Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
title_full Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
title_fullStr Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
title_full_unstemmed Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
title_short Study on Densification and Corrosion Resistance of Conversion Coatings on Magnesium Alloy Wheel Hubs Surface
title_sort study on densification and corrosion resistance of conversion coatings on magnesium alloy wheel hubs surface
topic magnesium alloy; cerium conversion coating; densification temperature; densification time; corrosion resistance
url http://www.mat-pro.com/fileup/1001-1560/PDF/20210320.pdf
work_keys_str_mv AT heweilizhangqingfengsuilimingluoxinmin studyondensificationandcorrosionresistanceofconversioncoatingsonmagnesiumalloywheelhubssurface