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Effect of Mg on the microstructure and electrochemical corrosion behavior of Arced Sprayed Zn-Al coating

机译:Mg对喷涂Zn-Al涂层微观结构和电化学腐蚀行为的影响

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Cored wires and high velocity arc spraying technique (HVAS) were used to produce high Mg content Zn-Al-Mg alloy coatings on low carbon steel substrates. The microstructures, mechanical properties and electrochemical corrosion behaviors of the Zn-Al-Mg coatings were investigated comparing with Zn and Zn-Al alloy coatings. And the electrochemical corrosion mechanisms of the coatings were discussed. The coatings show a typical aspect of layered thermal sprayed material structure. Chemical analysis of the coating indicated the composition to be Zn-14.9Al-5.9Mg-3.0O (wt.%). The main phases in the coatings are Zn, Mg_2Zn_(11), Al_(12)Mg_(17) and MgAl_2O_4, together with a little Al_2O_3 and ZnO. The corrosion potential of Zn-Al and Zn-Al-Mg coatings decreased a little and then increased towards the noble potential. With addition of Mg, the corrosion products accumulated to form stable passive film can block off the pores in the Zn-Al-Mg coating, and thus may prevent attack on the underlying steel substrate. The Zn-Al-Mg coatings show higher electrochemical corrosion resistance in salt solution than Zn-Al coatings.
机译:芯线和高速电弧喷涂技术(HVA)用于在低碳钢基材上生产高Mg含量Zn-Al-Mg合金涂层。研究了Zn-Al-Mg涂层的微观结构,机械性能和电化学腐蚀行为与Zn和Zn-Al合金涂层进行了比较。讨论了涂层的电化学腐蚀机制。涂层显示了层状热喷涂材料结构的典型方面。涂层的化学分析表明该组合物为Zn-14.9Al-5.9mg-3.0O(wt。%)。涂层中的主要相是Zn,Mg_2Zn_(11),Al_(12)Mg_(17)和Mgal_2O_4,与少数Al_2O_3和ZnO一起。 Zn-Al和Zn-Al-Mg涂层的腐蚀电位降低了一点,然后朝向惰性潜力增加。随着Mg的添加,积聚形成稳定的无源膜的腐蚀产物可以阻挡Zn-Al-Mg涂层中的孔,因此可以防止对下面的钢基板进行攻击。 Zn-Al-Mg涂层比Zn-Al涂层显示出盐溶液中更高的电化学耐腐蚀性。

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