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Study on the influencing factors of interfacial chemical reactions and adhesion effects in different metal coating composition systems

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DOI: 10.23977/jmpd.2026.100114 | Downloads: 2 | Views: 26

Author(s)

Jie Liu 1

Affiliation(s)

1 Zhong'an (Qian'an) Steel Plate Manufacturing Co., Ltd., Qian'an, Hebei, 064400, China

Corresponding Author

Jie Liu

ABSTRACT

This article studies the interfacial chemical reactions and adhesion properties of typical metal coating systems of zinc based, aluminum zinc based, and zinc aluminum magnesium during continuous hot plating and electroplating processes. Combining SEM, EDS, and XRD analyses, this study investigates the roles of aluminum, magnesium, and other elements in the formation and diffusion of interfacial reaction layers, and explores the effects of steel composition, surface oxidation state, and cooling rate on interfacial stability. The results indicate that magnesium element helps to improve the continuity of the interface coated layer, while aluminum content has a significant regulatory effect on the thickness and adhesion strength of the reaction layer, providing reference for the design of high-performance coatings.

KEYWORDS

Metal coating; Interface chemical reaction; Adhesion performance; Alloy elements; Hot dip plating

CITE THIS PAPER

Jie Liu. Study on the influencing factors of interfacial chemical reactions and adhesion effects in different metal coating composition systems. Journal of Materials, Processing and Design (2026). Vol. 10, No. 1, 110-118. DOI: http://dx.doi.org/10.23977/jmpd.2026.100114.

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