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Corrosion protection of particulate aluminum-matrix composites by anodization

机译:阳极氧化颗粒铝 - 基质复合材料的腐蚀保护

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Anodization is effective for improving the corrosion resistance of aluminum-matrix composites. For SiC particle filled aluminum, anodization was performed successfully in sulfuric acid electrolyte, as usual. However, for AlN particle filled aluminum, anodization needed to be performed in an alkaline (0.7 N NaOH) electrolyte, because NaOH reduced the reaction between AlN and water, whereas an acid enhanced this reaction. The concentration of NaOH in the electrolyte was critical; too high a concentration caused the dissolution of the anodizing product (Al_xO_3) by the NaOH, whereas too low a concentration did not provide enough ions for the electrochemical process. THe corrosion properties and anodization characteristic of pure aluminum, Al/AlN and Al/SiC were compared. Without anodization, pure Al had better corrosion resistance than the composites and Al/SiC had better corrosion resistance than Al/AlN. After anodization, the corrosion resistance of Al/AlN was better than Al/SiC and both composites were better than pure Al without anodization, but still not as good as the anodized pure Al.
机译:阳极化可有效地改善铝 - 基质复合材料的耐腐蚀性。对于SiC颗粒填充的铝,阳极化在硫酸电解质中成功地进行,如常规。然而,对于AlN颗粒填充的铝,阳极化需要在碱性(0.7N NaOH)电解质中进行,因为NaOH在AlN和水之间降低了反应,而酸增强了该反应。电解质中NaOH的浓度至关重要;太高的浓度导致NaOH溶解阳极氧化品(Al_XO_3),而过低的浓度没有为电化学方法提供足够的离子。比较了纯铝,Al / AlN和Al / SiC的腐蚀性和阳极氧化特性。没有阳极氧化,纯Al具有比复合材料更好的耐腐蚀性,并且Al / SiC具有比Al / Aln更好的耐腐蚀性。在阳极氧化之后,Al / Aln的耐腐蚀性优于Al / SiC,并且两种复合材料比纯Al更好而没有阳极氧化,但仍然不如阳极氧化纯Al一样好。

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