Effects of the combined addition of Zn and Mg on corrosion behaviors of electropainted AlSi-based metallic coatings used for hot-stamping steel sheets

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Abstract

The effects of the combined addition of Zn and Mg on the corrosion resistance of AlSi-based coating for automotive steel sheets were investigated using a variety of analytical and electrochemical techniques. The preferential dissolution of Mg and Zn from MgZn2/Mg2Si phases occurred on the AlSi-based coating that had been alloyed with a smaller portion of Zn and Mg, which contributed to the rapid surface coverage by corrosion products with a protective nature, reducing the corrosion current density. On the other hand, localized corrosion attacks caused by the selective dissolution of Mg were also observed in the AlSi-based coating with a smaller portion of Zn and Mg. Such alloying can also worsen its corrosion resistance when coated additionally with electrodeposited paint. The mechanistic reasons for these conflicting results are also discussed.

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Kim, S. O., Yang, W. S., & Kim, S. J. (2020). Effects of the combined addition of Zn and Mg on corrosion behaviors of electropainted AlSi-based metallic coatings used for hot-stamping steel sheets. Materials, 13(15), 1–15. https://doi.org/10.3390/ma13153379

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