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Corrosion Propagation Behavior of Magnesium Alloys under Atmospheric Condition

机译:大气条件下镁合金的腐蚀繁殖行为

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To investigate the corrosion mechanism of magnesium alloys under atmospheric conditions, field exposure tests were performed. In a marine environment, AZ31B and AZ91D alloys experienced localized corrosion, including pitting and filiform corrosion. In order to reproduce such actual atmospheric corrosion in a laboratory experiment, we employed a wet-dry cyclic test at a constant dew point. From the results of the wet-dry cyclic tests, the propagation mechanism of localized corrosion on magnesium alloys has been discussed. Localized corrosion occurred during the wetting period, and the corroded sites thus formed were repassivated during the drying period. In the next wetting period, new localized corrosion took place, but the repassivated sites were not reactivated. The repassivated sites have higher corrosion resistance than the non-corroded part of the surface because of the barrier effect of the corrosion products. In the case of AZ91D, Al enrichment in the surface region of the metal matrix is responsible for this corrosion resistance.
机译:为了研究大气条件下镁合金的腐蚀机理,进行现场暴露试验。在海洋环境中,AZ31B和AZ91D合金经历了局部腐蚀,包括点蚀和丝状腐蚀。为了在实验室实验中繁殖这种实际的大气腐蚀,我们在恒定的露点下使用湿干循环试验。从湿干循环试验的结果,讨论了镁合金上局部腐蚀的传播机理。在润湿时段期间发生局部腐蚀,并且在干燥期间将如此形成的腐蚀位点进行重新分配。在下一次润湿期间,发生了新的局部腐蚀,但重新分配的网站没有重新激活。由于腐蚀产物的阻挡效应,重新分配的位点比表面的屏障效果具有更高的耐腐蚀性。在AZ91D的情况下,金属基质的表面区域中的Al富集负责这种耐腐蚀性。

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