Corrosion behavior of Mg-(0~6)%Zn Casting Alloys in 1M NaCl Solution

In-Je Hwang, Young-Jig Kim, J. Jun
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Abstract

The effects of the Zn content on the microstructure and corrosion behavior in 1M NaCl solution were investigated in Mg(0~6)%Zn casting alloys. The MgZn phase was scarcely observed in the Mg-1%Zn alloy, while the Mg-(2~6)%Zn alloy consisted of α-(Mg) and MgZn phases. With an increase in the Zn content, the amount of the MgZn phase was gradually increased. Immersion and electrochemical corrosion tests indicated that the Mg-1%Zn alloy had the lowest corrosion rate among the alloys, and a further increase in the Zn content resulted in the deterioration of the corrosion resistance. Microstructural examinations of the corroded surfaces and EIS analyses of surface corrosion films revealed that the best corrosion resistance at 1%Zn was associated with the absence of MgZn phase particles in the microstructure and the contribution of Zn element to the formation of a protective film on the surface. A micro-galvanic effect by the MgZn particles led to the increased rate of corrosion at a higher Zn content.
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Mg-(0~6)%Zn铸造合金在1M NaCl溶液中的腐蚀行为
研究了锌含量对Mg(0~6)%Zn铸造合金在1M NaCl溶液中的组织和腐蚀行为的影响。Mg-1%Zn合金中几乎没有MgZn相,而Mg-(2~6)%Zn合金则由α-(Mg)相和MgZn相组成。随着Zn含量的增加,MgZn相的数量逐渐增加。浸渍和电化学腐蚀试验表明,Mg-1%Zn合金的腐蚀速率最低,进一步增加Zn含量会导致合金的耐蚀性下降。腐蚀表面的显微组织检查和表面腐蚀膜的EIS分析表明,在1%Zn时,最佳的耐蚀性与微观组织中MgZn相颗粒的缺失以及Zn元素对表面保护膜形成的贡献有关。当锌含量增加时,MgZn颗粒的微电偶效应导致腐蚀速率增加。
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