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Anodizing of aluminium and AA 2024-T3 alloy in chromic acid: Effects of sulphate on film growth

机译:铬酸铝和AA 2024-T3合金的阳极氧化:硫酸盐对薄膜生长的影响

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Chromic acid anodizing is important for the corrosion protection of aerospace aluminium alloys. Previous study has demonstrated that SO42- impurity in the chromic acid affects the film growth on aluminium at a voltage of 100 V. The present work further investigates aluminium and extends the study to industrial anodizing conditions (Bengough-Stuart (B-S) process) and to the AA 2024-T3 alloy. It is shown that SO42- concentrations between similar to 38-300 ppm reduce the film growth rate for aluminium anodized at 100V in comparison with an electrolyte than contains <= 1.5 ppm SO42-, whereas similar to 1500-3000 ppm SO42 have an opposite effect and lead to an unstable pore diameter. Under the B-S process, the film growth depends on the substrate composition, the SO42- content of the film, the film morphology and, for the alloy, oxygen generation. Corrosion tests of the alloy in 3.5% NaCl solution revealed better protection with films formed in chromic acid containing 38 ppm SO42- compared with <= 1.5 ppm SO42-, which are within the specified limits for sulphate impurity for chromic acid anodizing. The difference in corrosion protection is proposed to be related to the observed differences in the film morphologies; it is speculated that this may influence the retention of residues of chromate ions in the films. (C) 2016 Published by Elsevier B.V.
机译:铬酸阳极氧化对于航空航天铝合金的腐蚀保护是重要的。先前的研究表明,铬酸中的SO42-杂质在100V的电压下影响铝上的铝生长。本作者进一步研究了铝并将研究延伸到工业阳极氧化条件(Bengough-Stuart(BS))和AA 2024-T3合金。结果表明,与38-300ppm之间的SO42-浓度与电解质相比,与电解质相比,与含有比含有<= 1.5ppm的SO42-相比,减少了100V阳极氧化铝的膜生长速率,而类似于1500-3000ppm SO42具有相反的效果并导致孔径不稳定。在B-S过程下,膜生长取决于底物组合物,薄膜的SO42含量,薄膜形态,以及用于合金,氧产生。在3.5%NaCl溶液中的合金的腐蚀试验表明与含有38ppm的SO42-与<= 1.5ppm的SO42-,其是用于铬酸阳极硫酸盐杂质在规定范围内进行比较形成于铬酸膜更好的保护。腐蚀保护的差异被提出与观察到的薄膜形态的差异有关;推测这可能影响膜中铬酸盐离子残留物的保留。 (c)2016年由elestvier b.v出版。

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