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Comparison of Corrosion Resistance Characteristics of Zn-Al-Mg Alloy Steel according to Cutting Methods

Authors
김범수이경황김연원양정현
Issue Date
Dec-2025
Publisher
한국마린엔지니어링학회
Keywords
Zn-Al-Mg alloy; Cutting method; Corrosion resistance; Self-healing
Citation
한국마린엔지니어링학회지, v.49, no.6, pp 496 - 500
Pages
5
Indexed
KCI
Journal Title
한국마린엔지니어링학회지
Volume
49
Number
6
Start Page
496
End Page
500
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81662
ISSN
2234-7925
2765-4796
Abstract
The cutting method plays a critical role in determining the cut-edge quality and corrosion resistance of Zn–Al–Mg alloycoated steel. This study systematically compared the corrosion behavior at cut edges produced by different cutting processes. Plasma cutting caused oxide formation and partial evaporation of the zinc layer, resulting in darkened cut surfaces and rapid initial red rust formation due to loss of sacrificial protection. Shear cutting induced localized mechanical deformation and coating damage, leading to progressive corrosion initiation at damaged regions. In contrast, waterjet cutting produced clean cut edges with minimal thermal and mechanical damage, thereby maintaining surface stability and delaying corrosion. Gradual color changes during exposure indicated the formation of corrosion products associated with oxidation and self-healing behavior. Overall corrosion resistance followed the order: waterjet > shear > laser > plasma cutting. These results demonstrate that minimizing thermal and mechanical damage at the cut edge is essential for preserving the sacrificial protective function of Zn–Al–Mg coatings. Accordingly, waterjet and precision shearing are recommended for marine and outdoor structural applications.
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해양과학대학 (기계시스템공학과)
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