无铬密封处理对酒石酸硫酸阳极氧化(TSA)后AA2198-T851耐蚀性影响的研究

F. Queiroz, Aline de Fátima Santos Bugarin, Victor H. Ayusso, M. Terada, I. Costa
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摘要

AA 2198-T851是为飞机工业开发的第三代铝锂合金。铝锂合金在热处理过程中组织复杂,易发生局部腐蚀。为了防止局部腐蚀,这些合金通常通过阳极氧化来保护,以避免腐蚀环境。随后,对于阳极氧化,通常对零件进行密封处理。有些密封处理使用含六价铬离子的溶液。研究了在含铈离子溶液中进行无铬密封处理对AA2198-T851合金耐腐蚀性能的影响。为了比较,还对水热密封或未密封的样品进行了耐腐蚀性测试。在氯化钠溶液中,用电化学阻抗谱法评价了水热密封和含铈溶液中阳极氧化铝合金的耐蚀性。与水热密封相比,密封在含铈溶液中的样品提高了其耐腐蚀性。电化学试验中观察到的铈密封过程的有效性表明,在阻挡层腐蚀后,样品表面发生了“密封”过程。
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Investigation on the Effect of a Chromium-Free Sealing Treatment for the Corrosion Resistance of AA2198-T851 after Tartaric Sulphuric Anodizing (TSA)
The AA 2198-T851 is a third-generation Al-Li alloy developed for use in the aircraft industry. Al-Li alloys are susceptible to localized corrosion due to their complex microstructure resulting from the used thermomechanical treatment. In order to prevent localized corrosion, these alloys are usually protected by anodizing in order to avoid a corrosive environment. Subsequently, for anodizing, a sealing treatment is usually performed for parts. Some sealing treatments use hexavalent-chromium-ion-containing solutions. In this investigation, a chromium-free sealing treatment in a solution with cerium ions has been carried out, and the effect on the corrosion resistance of the AA2198-T851 alloy was investigated. Hydrothermally sealed or unsealed samples were also tested for corrosion resistance for comparison reasons. The corrosion resistance of the anodized aluminum alloy, either hydrothermally sealed or in a cerium-ion-containing solution, was evaluated in a sodium chloride solution by electrochemical impedance spectroscopy as a function of immersion time. The samples sealed in a cerium-containing solution increased their corrosion resistance when compared to the hydrothermally sealed. The effectiveness of the sealing process with cerium that was observed in the electrochemical tests indicated that after the corrosive attack of the barrier layer, there was a “sealing” process of the sample surface.
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