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  4. Microstructural evolution and corrosion behavior of constituent particles of AA2024-T3 Al alloy during zirconium conversion coating
 
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Microstructural evolution and corrosion behavior of constituent particles of AA2024-T3 Al alloy during zirconium conversion coating

Journal
Applied Surface Science
Journal Volume
635
Date Issued
2023-10-30
Author(s)
Shen, Guan Ting
Chen, Siao Ying
Huang, Chao Yu
CHAO-SUNG LIN  
DOI
10.1016/j.apsusc.2023.157657
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/633184
URL
https://api.elsevier.com/content/abstract/scopus_id/85161318682
Abstract
The constituent particles of AA2024-T3 Al alloys were identified and their microstructural change after alkaline degreasing, acidic desmutting, and zirconium (Zr) conversion coating was detailed. The constituent particles of AA2024-T3 included Al-Cu-Fe-Mn, θ-Al2Cu, and S-Al2CuMg, and were several micrometers in size. All these three particles were cathodic to the Al matrix after alkaline degreasing and acidic desmutting pretreatment. The OCP evolution in the Zr conversion bath revealed that the conversion coating reactivity of the as-polished AA2024-T3 was promoted after the pretreatment. The polarization test in 0.1 M Na2SO4 + 0.05 M NaCl solution showed that the cathodic kinetics were enhanced after the pretreatment. Subsequent Zr conversion coating inhibited the anodic kinetics but did not alter the cathodic kinetics in chloride solutions. The defects of ZrO2 coating were responsible for the insignificant change in the cathodic activities.
Subjects
Aluminum alloy | Constituent particle | Corrosion resistance | Microstructure | Pretreatment | Zr conversion coating
Type
journal article

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