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Composite film of magnesium alloy chemical conversion microarc oxidation

机译:镁合金化学转化微弧氧化复合膜

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摘要

The dark composite ceramic film was prepared on AZ91D magnesium alloy with a new method which combined chemical conversion with microarc oxidation. Using L-16 (4(5)) orthogonal test to optimise the optimum technological conditions of the chemical conversion treatment fluid. The surface morphologies, chemical composition and structure of the film were examined by SEM and XRD. The corrosion resistance performances of the films were investigated by electrochemical measurements (in 3.5 wt-% NaCl aqueous solution). The results showed Zn element was introduced into the microarc oxide ceramic films by chemical conversion pretreatment. The main composition of composite ceramic film was ZnO, ZnO2 and Mg-3 (PO4)(2) and the surface of the composite ceramic film was smooth, compact and even dark. The saline soaks experiment (72 h) and electrochemical analysis showed corrosion resistance of ceramic film was improved obviously. Adding glycerin can make microarc oxidation reaction more stable and ceramic film of the discharge apertures was smaller. This further increased the density of the film layer and improved the corrosion resistance of the film.
机译:采用化学转化与微弧氧化相结合的新方法,在AZ91D镁合金上制备了深色复合陶瓷膜。使用L-16(4(5))正交试验优化化学转化处理液的最佳工艺条件。通过SEM和XRD检查膜的表面形貌,化学组成和结构。通过电化学测量(在3.5重量%的NaCl水溶液中)研究了膜的耐腐蚀性能。结果表明,通过化学转化预处理将Zn元素引入微弧氧化陶瓷膜中。复合陶瓷膜的主要成分为ZnO,ZnO2和Mg-3(PO4)(2),复合陶瓷膜的表面光滑,致密甚至深色。盐水浸泡实验(72 h)和电化学分析表明,陶瓷膜的耐蚀性明显提高。添加甘油可使微弧氧化反应更稳定,放电孔的陶瓷膜更小。这进一步增加了膜层的密度并改善了膜的耐腐蚀性。

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