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Microstructure and Corrosion Resistance of Zn-Al Diffusion Layer on 45 Steel Aided by Mechanical Energy

机译:机械能辅助45钢上Zn-Al扩散层的组织和耐蚀性

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摘要

In harsh environments, the corrosion damage of steel structures and equipment is a serious threat to the operational safety of service. In this paper, a Zn-Al diffusion layer was fabricated on 45 steel by the Mechanical Energy Aided Diffusion Method (MEADM) at 450 °C. The microstructure and composition, the surface topography, and the electrochemical performance of the Zn-Al diffusion layer were analyzed before and after corrosion. The results show that the Zn-Al diffusion layer are composed of Al2O3 and Γ1 phase (Fe11Zn40) and δ1 phase (FeZn6.67, FeZn8.87, and FeZn10.98) Zn-Fe alloy. There is a transition zone with the thickness of about 5 μm at the interface between the Zn-Al diffusion layer and the substrate, and a carbon-rich layer exists in this zone. The full immersion test and electrochemical test show that the compact corrosion products produced by the initial corrosion of the Zn-Al diffusion layer will firmly bond to the Zn-Al diffusion layer surface and fill the crack, which plays a role in preventing corrosion of the corrosive medium and reducing the corrosion rate of the Zn-Al diffusion layer. The salt spray test reveals that the initial corrosion products of the Zn-Al diffusion layer are mainly ZnO and Zn5(OH)8Cl2H2O. New corrosion products such as ZnAl2O4, FeOCl appear at the middle corrosion stage. The corrosion product ZnAl2O4 disappears, and the corrosion products Zn(OH)2 and Al(OH)3 appear at the later corrosion stage.
机译:在恶劣的环境中,钢结构和设备的腐蚀损坏严重威胁服务的操作安全。本文采用机械能辅助扩散法(MEADM)在450°C的温度下在45钢上制备了Zn-Al扩散层。分析了腐蚀前后Zn-Al扩散层的微观结构,组成,表面形貌和电化学性能。结果表明,Zn-Al扩散层由Al2O3和Γ1相(Fe11Zn40)和δ1相(FeZn6.67,FeZn8.87和FeZn10.98)Zn-Fe合金组成。在Zn-Al扩散层与衬底之间的界面处存在厚度约为5μm的过渡区,并且在该区中存在富碳层。完全浸没测试和电化学测试表明,由Zn-Al扩散层的初始腐蚀产生的致密腐蚀产物将牢固地键合到Zn-Al扩散层的表面并填充裂纹,从而起到防止腐蚀的作用。腐蚀介质,降低Zn-Al扩散层的腐蚀速率。盐雾试验表明,Zn-Al扩散层的初始腐蚀产物主要为ZnO和Zn5(OH)8Cl2H2O。新的腐蚀产物,如ZnAl2O4,FeOCl出现在中间腐蚀阶段。腐蚀产物ZnAl2O4消失,腐蚀产物Zn(OH)2和Al(OH) 3 出现在腐蚀后期。

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