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Plasma electrolytic oxidation of AZ91D magnesium alloy with different additives and its corrosion behavior

机译:不同添加剂对AZ91D镁合金的等离子电解氧化及其腐蚀行为

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摘要

Plasma electrolytic oxidation (PEO) of Mg-based AZ91D alloys was investigated using 50 Hz AC anodizing technique in an alkaline borate solution, which contained a new kind of organic additive and without F, P, and Cr. The anodizing technological parameters have been optimized and a kind of ivory-white smooth anodic film with high corrosion resistance was obtained. It was found that the formation of the anodic films was always coupled with sparking and oxygen evolution, whose intensity changed with the additive and anodizing voltage. All EIS plots have two capacitive loops and one low frequency inductive component. Two capacitive arcs present the barrier and porous layer of the PEO film and the inductive component in the low frequency domain is a complex behavior due to the porous structure connected to the electrolyte. EIS plots and fitting results show that a self-sealing process of the PEO firm with different additives takes place in the beginning of immersion time, then corrosion attack becomes a preponderant process to promote the degradation of the film. Tafel results show that PEO treatment decreases the corrosion current density by four, even five orders of magnitude, while additives content does not affect strongly the electrochemical corrosion behavior. Salt spray test shows that the PEO film formed with NaAlO{sub}2 and Na{sub}2SiO{sub}3 presents good corrosion resistance, over 600 h without any sealing treatment. The difference of corrosion resistance arose by additives examined by electrochemical techniques and salt spray test does not show strict corresponding relationship.
机译:使用50 Hz AC阳极氧化技术在碱性硼酸盐溶液中研究了镁基AZ91D合金的等离子体电解氧化(PEO),该溶液含有一种新型的有机添加剂且不含F,P和Cr。优化了阳极氧化工艺参数,得到了一种具有高耐蚀性的象牙白色光滑阳极膜。发现阳极膜的形成总是与火花和氧气逸出相关,其强度随添加剂和阳极氧化电压而变化。所有EIS图都具有两个电容环路和一个低频电感分量。由于PEO膜的势垒层和多孔层存在两个电容性电弧,并且由于连接到电解质的多孔结构,低频域中的电感成分具有复杂的行为。 EIS图和拟合结果表明,在浸渍时间开始时,使用不同添加剂的PEO公司的自密封过程发生了,腐蚀侵蚀成为促进膜降解的主要过程。 Tafel结果表明,PEO处理将腐蚀电流密度降低了四个,甚至五个数量级,而添加剂的含量并没有强烈影响电化学腐蚀行为。盐雾试验表明,由NaAlO {sub} 2和Na {sub} 2SiO {sub} 3形成的PEO膜在600小时内没有任何密封处理,具有良好的耐腐蚀性。通过电化学技术和盐雾试验检测到的添加剂引起的耐腐蚀性差异并没有显示严格的对应关系。

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