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Aluminum Coating Obtained Through the Sol-Gel Method to Protect Metallic Surfaces Against Corrosion

机译:通过溶胶-凝胶法获得的铝涂层可保护金属表面免受腐蚀

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摘要

Before metallic materials are painted, surface pre-treatments are usually applied, these are known as conversion treatments. Such treatments aim to slow the degradation of the organic coating/metallic substrate system in aggressive environments. Amongst the most effective conversion coatings for aluminum and its alloys, is the chromatization. However, the high toxicity of this process waste has led industry to ban the chromatization process from the market and seek new procedures to protect metallic surfaces which, at the same time, present lower toxicity and are efficient to protect against corrosion. This study aims to obtain a coating composed of aluminum oxide on the Al AA 3003 alloy, as a potential method to substitute the chromatization process. A study on the protection properties against corrosion of the base metal, coated with oxide, was developed. Open circuit potential tests, electrochemical impedance spectroscopy, and anodic potentiodynamic polarization curves were carried out in a Na_2SO_4 0,5 molL~(-1) solution and pH 4,0. The morphology characterization was performed employing the scanning electronic microscopy (SEM). Results indicated that the new coating presented better behavior than the chromatized samples, suggesting that the former can substitute the chrome coating.
机译:在对金属材料进行涂漆之前,通常要进行表面预处理,这被称为转化处理。这样的处理旨在减缓侵蚀性环境中有机涂层/金属基底系统的降解。铬化是铝及其合金最有效的转化膜。然而,这种工艺废料的高毒性已导致工业界禁止市场上的铬酸盐化工艺,并寻求保护金属表面的新程序,该方法同时具有较低的毒性并能有效地防止腐蚀。这项研究旨在在Al AA 3003合金上获得由氧化铝组成的涂层,作为替代铬化工艺的潜在方法。对涂有氧化物的贱金属的腐蚀防护性能进行了研究。在Na_2SO_4 0.5 molL〜(-1)溶液和pH值为4.0的条件下进行开路电势测试,电化学阻抗谱和阳极电位动力学极化曲线。使用扫描电子显微镜(SEM)进行形态表征。结果表明,新涂层比铬酸盐样品具有更好的性能,表明前者可以替代铬涂层。

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