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Corrosion Characteristics of Plasma Electrolytic Oxidation Treated AZ31 Magnesium Alloy with an Increase of the Coating Thickness

机译:等离子体电解氧化处理的AZ31镁合金的腐蚀特性随涂层厚度的增加

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摘要

The growth of the PEO coating with processing time on an AZ31B magnesium alloy in a dilute alkaline electrolyte containing silicate and the corrosion characteristics according to its thickness were investigated. The oxide film grew a porous outer layer mainly consisting of silicate with the spark discharge phenomenon from the beginning of the reaction and reached a certain limit thickness later in the reaction. This reaction was followed by the inner layer, mainly consisting of MgO, growing rapidly and densifying. Based on the results of the potentiodynamic polarization and chronoamperometric test, it was found that within 1 minute of the processing time, due to the contribution of the dielectric layer and MgF_2 phase layer formed at the interface between the oxide and the substrate, the corrosion resistance was relatively high, but its stability against corrosion was not enough. Moreover, when the thickness of the oxide coating was grown mainly with the silicate outer layer, the increase in the pore size, which acts as a channel of spark discharge, was the leading cause of the decrease in the corrosion resistance. The superior corrosion resistance and the stability of the PEO coating in the later reaction time of the processing are due to the growth and densification of the inner layer of MgO.
机译:研究了含有硅酸盐的稀碱电解质中AZ31B镁合金的加工时间的PEO涂层的生长和根据其厚度的腐蚀特性。氧化物膜的成长主要由硅酸盐与来自反应开始的火花放电现象组成,并在反应后达到一定的极限厚度。该反应之后是内层,主要由MgO组成,迅速生长并致密化。基于电位动力学偏振和计时率测试的结果,发现在处理时间的1分钟内,由于在氧化物和基板之间的界面处形成的介电层和MGF_2相层的贡献,耐腐蚀性比较高,但它的稳定性抗腐蚀是不够的。此外,当氧化物涂层的厚度主要与硅酸盐外层生长时,孔径的增加,充当火花放电通道,是耐腐蚀性降低的主要原因。在加工的后续反应时间中,PEO涂层的卓越耐腐蚀性和稳定性是由于MgO的内层的生长和致密化。

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