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Structure and Properties of Anodized Films Formed on AZ91D Magnesium Alloy

机译:AZ91D镁合金形成阳极氧化膜的结构与性能

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Anodized films on AZ91D magnesium alloy were prepared in sodium hydroxide based solution. Structure and properties of the anodized films were investigated by X-ray diffraction (XRD), scanning electron microscope (SEM) and electrochemical potentiodynamic polarization analysis. The results of XRD showed that the films were mainly composed of Mg(OH)_2 and Al(OH)_3. As the solution temperature increasing, the anodized films became thicker and denser, which could cover up the substrate. The films also became thicker and denser with the increase of anodizing time. The grain in the films grew fast when anodic current density increasing and a larger grain size would be found at a higher anodic current density. The results of microscopic analysis exhibited the porous-type anodic oxide, which was similar to the films on aluminum alloy. The results of electrochemical potentiodynamic polarization analysis showed that thermodynamic stability of the alloy had a certain improvement after anodization. The anodized films also exhibited an obvious increase of polarization resistance R_P and an obvious decrease of corrosion current density i_c. Discoloration time of drop test on the films lasted for 30 min, which indicated that corrosion resistance of the magnesium alloy was greatly improved by anodization.
机译:AZ91D镁合金上的阳极氧化膜在氢氧化钠基溶液中制备。通过X射线衍射(XRD),扫描电子显微镜(SEM)和电化学电位偏振分析研究了阳极氧化膜的结构和性质。 XRD的结果表明,薄膜主要由Mg(OH)_2和Al(OH)_3组成。随着溶液温度的增加,阳极氧化膜变得较厚,更密集,可以覆盖基板。随着阳极氧化时间的增加,薄膜也变得更厚,更浓。当阳极电流密度增加并且在更高的阳极电流密度下发现较大的晶粒尺寸时,薄膜中的颗粒增长。显微镜分析结果表现出多孔型阳极氧化物,其与铝合金上的薄膜类似。电化学电位偏振分析结果表明,合金的热力学稳定性在阳极氧化后具有一定的改善。阳极氧化膜还表现出偏振电阻R_P的明显增加,并且腐蚀电流密度I_c的明显降低。薄膜上的变色时间持续30分钟,这表明通过阳极氧化大大提高了镁合金的耐腐蚀性。

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