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首页> 外文期刊>Materials and Corrosion >Evaluation of different sealing methods for anodized aluminum-silicon carbide (Al/SiC) composites using EIS and SEM techniques
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Evaluation of different sealing methods for anodized aluminum-silicon carbide (Al/SiC) composites using EIS and SEM techniques

机译:使用EIS和SEM技术评估阳极氧化铝-碳化硅(Al / SiC)复合材料的不同密封方法

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Electrochemical impedance spectroscopy (EIS) and the scanning electron microscope (SEM) have been used in an investigation of the effectiveness of various sealing methods that can be used to improve the corrosion resistance of an anodized aluminum-silicon carbide (Al/SiC) composite. Anodic oxide films were grown on Al7075-T6 and the Al/SiC composite by sulfuric acid anodizing and sealing in a cold saturated solution of nickel acetate. Other samples were sealed using the traditional method of boiling water or hot nickel acetate for comparison. The results revealed a uniform anodized layer on Al7075-T6 that resisted pitting corrosion for more than 2 weeks exposure to NaCl, whereas a cracked oxide film with variations in thickness was observed on the composite material. Pit initiation occurred in less than 5 days on the anodized Al/SiC that was sealed in the hot solutions. This study suggests that the traditional hot sealing methods did not provide sufficient corrosion protection for aluminum metal-matrix composites (MMCs) because the reinforcing SiC particles deteriorated the surface film structure. However, this defective film can be repaired by nickel hydrate precipitation during cold sealing or by applying a thick polyurethane coating.
机译:电化学阻抗谱(EIS)和扫描电子显微镜(SEM)已用于研究各种密封方法的有效性,这些密封方法可用于改善阳极氧化铝-碳化硅(Al / SiC)复合材料的耐腐蚀性。通过在硫酸镍的冷饱和溶液中进行硫酸阳极氧化和密封,在Al7075-T6和Al / SiC复合材料上生长阳极氧化膜。使用传统的沸水或热乙酸镍方法密封其他样品以进行比较。结果表明,Al7075-T6上有一层均匀的阳极氧化层,可以抵抗点蚀,暴露于NaCl中超过2周,而在复合材料上观察到厚度变化的破裂氧化膜。在不到5天的时间里,在热溶液中密封的阳极氧化铝/ SiC上发生了坑坑引发。这项研究表明,传统的热封方法不能为铝金属基复合材料(MMC)提供足够的腐蚀保护,因为增强的SiC颗粒会破坏表面膜结构。但是,该缺陷膜可以通过在冷封期间析出水合镍或通过涂覆厚的聚氨酯涂层来修复。

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