Effect of Laminar Flow on the Corrosion Activity of AA6061-T6 in Seawater

G. Acosta, L. Veleva, L. Chávez, J. L. Lopez
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引用次数: 4

Abstract

The electrochemical behaviour and surface changes on AA6061-T6 alloy exposed to Caribbean seawater from the Cozumel Channel for 30 days under laminar flow (0.1 ms−1) were studied, these contrasting then with stationary conditions. Open circuit potential monitoring and electrochemical current fluctuations, considered as electrochemical noise (EN), were employed as two nondestructive methods. The calculated corrosion current, based on Rn, was one order higher in laminar flow. The fluctuations of current were transformed in the frequency domain. Their power spectral density (PSD) plots were obtained in order to gain information concerning the dynamic of the spontaneous release of energy during the corrosion process. The value of the exponent β in PSD graphs suggested that the localised corrosion on AA6061-T6 surface occurs as a persistent stationary process, which dynamic is controlled by oxygen diffusion. The changes in the morphology and elemental composition of the formed layers revealed that the localised attacks occurred in the vicinity of intermetallic particles rich in Fe and Cu, which act as cathodes.
层流对AA6061-T6在海水中腐蚀活性的影响
研究了AA6061-T6合金在Cozumel海峡加勒比海海水层流(0.1 ms−1)条件下暴露30天的电化学行为和表面变化,并与固定条件进行了对比。开路电位监测和电化学电流波动被认为是电化学噪声,是两种无损检测方法。在层流中,计算得到的腐蚀电流以Rn为基准高一个数量级。对电流的波动进行频域变换。为了获得腐蚀过程中能量自发释放的动态信息,绘制了它们的功率谱密度(PSD)图。PSD图的β指数表明,AA6061-T6表面的局部腐蚀是一个持续的平稳过程,动力学上受氧扩散控制。形成层的形貌和元素组成的变化表明,局部攻击发生在富铁和富铜的金属间颗粒附近,这些金属间颗粒充当阴极。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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