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Influence of microstructure of zinc-aluminium-magnesium alloy coated steel on the corrosion behavior in outdoor marine atmosphere

机译:锌 - 铝 - 镁合金涂层钢涂层涂层涂层对户外海洋气氛腐蚀行为的影响

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Model hot-dip Zn-Al-Mg coatings with various microstructures were produced in a galvanising simulator by changing the cooling rate. Full characterization of the coatings was performed to identify the chemical composition of the different phases, the size of the grains and their distribution. The corrosion properties of the model microstructures were investigated in outdoor marine atmosphere up to 2 years. Weight loss measurements and cross section observations revealed a tendency for fine microstructures enriched in eutectic phases to be the most corrosion resistant. This was connected to a lower size of cathodic areas at the surface (zinc dendrites), the preferential dissolution of Mg-rich phase (eutectic) and the formation of a stable layered double hydroxide on the surface.
机译:通过改变冷却速率,在镀锌模拟器中产生具有各种微结构的型号热浸Zn-Al-Mg涂层。 进行涂层的全部表征以鉴定不同阶段的化学成分,晶粒的大小及其分布。 在户外海洋气氛中研究了模型微观结构的腐蚀性能,长达2年。 减肥测量和横截面观察显示富含共晶相富含细胞结构的趋势是最耐腐蚀性的。 这与表面(锌枝丝)的阴极区域的较低尺寸相连,优先溶解富含Mg的相(共晶),并在表面上形成稳定的层状双氢氧化物。

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