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PROTECTIVE SILICA-BASED COATING FOR ALUMINUM 6092/SiCp METAL MATRIX COMPOSITE IN CHLORIDE MEDIA

机译:氯化物介质中6092 / SICP金属基质复合材料的保护性二氧化硅涂料

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Aluminum alloys are used widely in automotive and aerospace industries. The demand for materials of superior mechanical, thermal and electrical properties has focused attention on aluminum metal matrix composites,(AMMCs). However, AMMCs have a more inhomogeneous structure than alloys due to presence of reinforcing particles. Such an inhomogeneous structure can enhance the pitting corrosion susceptibility, as well as cause a preferential dissolution of the interface between the matrix and the reinforcing particles. This paper discusses the possibility of improving the corrosion resistance of ALCOA 6092/SiC 17.5p T6 AMMCs using silica conversion coatings. The proposed silica coating is environmentally-friendly and is based on low cost sodium metasilicate solutions of different concentrations(10, 20, 50 and 100 g/1). Electrochemical Impedance Spectroscopy(EIS), linear polarization and cyclic voltammetery tests were used to analyze the corrosion of the AMMCs in 3.5% NaCl. The polarization resistance(Rp)for the uncoated AMMCs was measured by EIS to be approximately 3.0×10~3 Q.c㎡. The Rp improved about one order of magnitude for the substrate coated with silica conversion coating with a distinct improvement in the localized(pitting, crevice and intergranular)corrosion resistance. The corrosion rate decreased for the coated specimens, indicating that silica coating behaves as barrier to prevent the chloride attack and hence, decreases the susceptibility of the AMMCs to localized corrosion. The optimum silica concentration to provide the highest corrosion inhibition characteristics for AMMCs was 50 g/1. Increasing the silica concentration to 100 g/1 was found to have an adverse effect on the corrosion resistance. Results showed that a simple immersion in a silica solution is very effective for improving the corrosion resistance by forming a barrier protective layer over AMMCs substrate.
机译:铝合金广泛用于汽车和航空航天行业。对卓越机械,热和电性能材料的需求集中在铝金属基质复合材料上注目(AMMC)。然而,由于存在增强颗粒,AMMC具有比合金更不均匀的结构。这种不均匀的结构可以增强点蚀腐蚀性敏感性,以及导致基质和增强颗粒之间的界面的优先溶解。本文讨论了使用二氧化硅转化涂层改善AlCoA 6092 / SiC 17.5P T6 AMCS的耐腐蚀性的可能性。所提出的二氧化硅涂层是环保的,基于不同浓度(10,20,50和100g / 1)的低成本碳酸钠溶液。电化学阻抗谱(EIS),线性偏振和循环伏安术试验用于分析3.5%NaCl中AMMC的腐蚀。通过EIS测量未涂覆的AMCS的偏振电阻(RP),〜约为3.0×10〜3 Q.C1。 RP改善了涂有二氧化硅转化涂层的基材的一个大小级,其局部化(蚀刻,缝隙和晶间)耐腐蚀性不同。涂布标本的腐蚀速率降低,表明二氧化硅涂层的表现为防止氯化物侵蚀的屏障,从而降低AMMC对局部腐蚀的敏感性。为AMMC提供最高腐蚀抑制特性的最佳二氧化硅浓度为50g / 1。发现将二氧化硅浓度增加到100g / 1的对耐腐蚀性产生不利影响。结果表明,通过在AMMCS基板上形成阻隔保护层,二氧化硅溶液中的简单浸渍非常有效地改善耐腐蚀性。

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