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Correlation Between The Surface Chemistry And The Atmospheric Corrosion Of Az31, Az80 And Az91d Magnesium Alloys

机译:Az31,Az80和Az91d镁合金的表面化学性质与大气腐蚀之间的关系

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X-ray photoelectron spectroscopy (XPS) was used in order to investigate the correlation between the surface chemistry and the atmospheric corrosion of AZ31, AZ80 and AZ91D magnesium alloys exposed to 98% relative humidity at 50℃. Commercially pure magnesium, used as the reference material, revealed MgO, Mg(OH)_2 and tracers of magnesium carbonate in the air-formed film. For the AZ80 and AZ91D alloys, the amount of magnesium carbonate formed on the surface reached similar values to those of MgO and Mg(OH)_2. A linear relation between the amount of magnesium carbonate formed on the surface and the subsequent corrosion behaviour in the humid environment was found. The AZ80 alloy revealed the highest amount of magnesium carbonate in the air-formed film and the highest atmospheric corrosion resistance, even higher than the AZ91D alloy, indicating that aluminium distribution in the alloy microstructure influenced the amount of magnesium carbonate formed.
机译:为了研究50℃下相对湿度为98%的AZ31,AZ80和AZ91D镁合金的表面化学性质与大气腐蚀之间的关系,使用了X射线光电子能谱(XPS)。用作参考材料的商业纯镁在气流形成的膜中显示出MgO,Mg(OH)_2和示踪剂碳酸镁。对于AZ80和AZ91D合金,在表面形成的碳酸镁量达到与MgO和Mg(OH)_2相似的值。发现在表面上形成的碳酸镁的量与随后在潮湿环境中的腐蚀行为之间存在线性关系。 AZ80合金在气态膜中显示出最高的碳酸镁含量和最高的耐大气腐蚀性能,甚至比AZ91D合金还要高,这表明合金微观结构中的铝分布会影响所形成的碳酸镁的含量。

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