HDA Coating on AISI 1045 Steel with Enhanced Corrosion and Wear Performance
Jiajie Wang, Siyu Gu, Heyi Ma, Hongfei Yu, Chuang Yang, Jiaxiang Zhao, Xiaochen Zhang
Heilongjiang Institute of Technology Northeast Agricultural University China Electronic Product Reliability and Environmental Test Institute
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摘要与影响
AISI 1045 steel often undergoes premature failure under combined corrosive-wear conditions due to its insufficient surface durability. To address this, a hot-dip aluminum (HDA) coating was deposited on the steel substrate. The microstructure, corrosion behavior, and tribological properties of the coating were systematically characterized using scanning electron microscopy (SEM), electrochemical techniques, and tribometry. The results reveal that the coating exhibits a continuous triple-layer structure, consisting of the steel substrate, an intermediate Fe-Al intermetallic compound layer, and an outer aluminum-rich layer. In a 3.5 wt.% NaCl solution, the coating formed a protective Al2O3 film, demonstrating clear passivation behavior. It significantly enhanced the substrate’s performance, achieving an approximately 90% reduction in wear rate and a substantial increase in charge transfer resistance. The coated sample showed a lower friction coefficient (0.24) compared to the bare substrate (0.34). Herein, this work demonstrates that a straightforward and industrially viable hot-dip aluminizing process can effectively improve the corrosion and wear resistance of medium-carbon steel. The findings provide a practical surface-hardening strategy for such steels operating in aggressive environments.
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工程Electrodeposition and Electroless Coatings
Corrosion Behavior and Inhibition · Metal and Thin Film Mechanics
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