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Effect of V2O5 Additive on Micro-Arc Oxidation Coatings Fabricated on Magnesium Alloys with Different Loading Voltages

机译:V2O5添加剂对不同负载电压镁合金制造的微弧氧化涂层的影响

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摘要

Effect of V2O5 additive in silicate-containing electrolyte on AZ91D magnesium alloys treated by micro-arc oxidation (MAO) technology under different loading voltages was investigated. The results showed that vanadium was well up-taken into the coating chemically. Moreover, a new phase of MgV2O4 with spinel structure was obtained in MAO coatings due to V2O5 added into the electrolyte. The MgV2O4 phase was responsible for the coatings exhibiting brown color and also was beneficial to improving the anti-corrosion property. In spotting tests, the corrosion resistances of coatings prepared under the high voltage are about 6–9 times higher than those of the low voltage because of the thicker coatings of the former. In potentiodynamic polarization tests, the coatings’ corrosion resistances were improved with the addition of V2O5, which was more significant under the low voltage than that under the high voltage. When the concentration of V2O5 was 0.2 g/L, the corrosion current density of the coating was the lowest, which means that the coating’s corrosion resistance under the low voltage is the best. Hence, it is necessary to carry out targeted design of the coating’s microstructure according to the different applications.
机译:研究了V2O5添加剂在不同负载电压下通过微弧氧化(MAO)技术处理的AZ91D镁合金上的含硅酸盐电解质的影响。结果表明,化学升高了钒。此外,由于v2O5加入电解质,在MAO涂层中获得MgV2O4的新阶段。 Mgv2O4相对表现出棕色的涂层负责,并且有利于改善抗腐蚀性。在点发现测试中,由于前者厚度厚度,高压下方制备的涂层的腐蚀电阻比低电压高约6-9倍。在电位动力学偏振试验中,随着V2O5的添加,涂层的耐腐蚀性在低电压下比高电压下方更大。当V2O5的浓度为0.2g / L时,涂层的腐蚀电流密度最低,这意味着涂层在低压下的耐腐蚀性是最佳的。因此,必须根据不同的应用来执行涂层微观结构的靶向设计。

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