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首页> 外文期刊>Journal of Applied Electrochemistry >Characterization of passivity and pitting corrosion of 3003 aluminum alloy in ethylene glycol-water solutions
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Characterization of passivity and pitting corrosion of 3003 aluminum alloy in ethylene glycol-water solutions

机译:乙二醇-水溶液中3003铝合金的钝化和点蚀特性

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摘要

In this work, the passivity and pitting corrosion behavior of 3003 aluminum (Al) alloy in ethylene glycol-water solutions was investigated using various electrochemical measurements, Mott-Schottky analysis and surface analysis techniques. Results demonstrate that the passive film formed on Al alloy contains both Al oxide and Al alcohol, showing an n-type semiconductor in nature. There is an enhanced corrosion resistance of the Al-alcohol film, which is resistant to adsorption of chloride ions. The pitting corrosion of 3003 Al alloy occurs in the solutions containing a low concentration of ethylene glycol only, where the formed film is dominated by Al oxide. Chloride ions attack and replace the oxygen vacancies in the film, resulting in a local detachment of the film from the Al alloy. A galvanic effect exists between Al alloy substrate and the adjacent second phase particles. Pits form when Al alloy substrate is dissolved away and the second phase particles drop off from the substrate.
机译:在这项工作中,使用各种电化学测量,Mott-Schottky分析和表面分析技术研究了3003铝(Al)合金在乙二醇水溶液中的钝化和点蚀行为。结果表明,在铝合金上形成的钝化膜同时包含氧化铝和铝醇,本质上显示出n型半导体。铝醇膜具有增强的耐腐蚀性,其耐氯离子的吸附。 3003铝合金的点蚀发生在仅包含低浓度乙二醇的溶液中,在该溶液中形成的膜主要由氧化铝占据。氯离子侵蚀并置换了薄膜中的氧空位,导致薄膜与铝合金局部脱离。在铝合金基底和相邻的第二相颗粒之间存在电效应。当铝合金基材溶解掉并且第二相颗粒从基材脱落时,会形成凹坑。

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