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Corrosion Resistance of Mg Alloy with High Zn Concentration Including Impurity Cu

机译:镁合金具有高Zn浓度的耐腐蚀性,包括杂质Cu

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Mg alloys are very attractive materials for transportation industry due to their toughness and lightness. Recycling Mg alloys is desired for energy saving that otherwise would be required to produce its primary metal. However, secondary produced Mg tends to contain a few impurity elements that deteriorate its corrosion resistance. For example, contamination of Mg alloy by Cu induces second phase of Mg_2Cu and it works as strong cathode, resulting in the corrosion rate rapidly increasing. It was previously reported that the corrosion resistance of Mg with impurity Cu was remarkably improved by addition of alloying element Zn. Addition of Zn into Mg formed MgZn_2 phase and incorporated Cu into MgZn_2 phase instead of Mg_2Cu formation. In this way, since Zn serves to improve the corrosion resistance of Mg, Mg alloy with high Zn concentration may form a lot of MgZn_2 and may have better corrosion resistance even with high Cu concentration. In this work, the corrosion behavior of Mg-6mass%-1mass%Al (ZA61) with different Cu content up to 1mass% was investigated. As a result, ZA61-1.0Cu had much lower corrosion rate compared to Mg-0.2%Cu and the corrosion rate was almost the same as that of pure Mg.
机译:由于其韧性和轻盈,Mg合金是运输工业的非常有吸引力的材料。期望回收Mg合金的节能,以否则将需要生产其主要金属。然而,二次产生的Mg倾向于含有少量劣化其耐腐蚀性的杂质元素。例如,Cu的Mg合金的污染诱导Mg_2Cu的第二阶段,并且它用作强阴极,导致腐蚀速率迅速增加。先前报道,通过加入合金元素Zn,显着提高了Mg与杂质Cu的耐腐蚀性。将Zn加入Mg形成MgZN_2相并将Cu掺入MgZN_2相而不是Mg_2Cu形成。以这种方式,由于Zn用于改善Mg的耐腐蚀性,因此具有高Zn浓度的Mg合金可以形成大量MgZn_2,并且即使具有高Cu浓度,也可以具有更好的耐腐蚀性。在这项工作中,研究了Mg-6mass%-1mass%Al(Za61)与不同Cu含量高达1mass%的腐蚀行为。结果,与Mg-0.2%Cu相比,Za61-1.0cu具有更低的腐蚀速率,并且腐蚀速率与纯mg的腐蚀速率几乎相同。

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