铝合金在天然海水中的电化学行为

A. Ahmad, Z. Yahya, N. M. Mohd Daud, M. Daud
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引用次数: 1

摘要

在天然海水中,纯铝会形成氧化层,形成屏障,防止腐蚀。通过引入局部原电池,与其他元素合金化可以防止氧化层的形成。不同铝合金表现出不同的电化学行为。本课题主要研究不同化学成分的铝合金在天然海水中的电化学行为。了解铝合金的腐蚀行为对制备用于阴极保护的牺牲阳极具有重要意义。用Zn、Sn、Mg、Cu、Fe、Si等合金元素制备铝合金。第一组铝合金样品分为两组,其中锌的重量百分比相同,锡的重量百分比不同。第2组铝合金样品中Mg、Cu、Fe、Si的重量百分比相同,Sn的重量百分比不同。然后对样品进行腐蚀行为实验,包括塔菲尔图、腐蚀电位和动电位扫描。发现与Mg、Cu、Fe和Si合金化,而不是仅与Zn和Sn合金化,进一步增加了铝合金的负电位和颗粒分布密度,进一步降低了铝合金的腐蚀速度。当与Zn、Sn、Mg、Cu、Fe、Si合金化时,铝合金的活跃性也有所提高。
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Electrochemical behaviour of aluminum alloys in natural seawater
In natural seawater, pure aluminum develops oxide layer which forms a barrier, protecting against corrosion. Alloying with other elements prevents the development of oxide layer by introducing localized galvanic cells. Different aluminum alloys exhibit different electrochemical behavior. The scope of the project was to study the electrochemical behavior of different chemical composition of aluminum alloys in natural seawater. The significance of understanding the corrosion behavior of aluminum alloys is essential in the fabrication of sacrificial anodes to be used in cathodic protection in corrosion control. Aluminum alloys were fabricated using alloying elements Zn, Sn, Mg, Cu, Fe, and Si. Divided into two groups, samples of aluminum alloys in Group 1 contain same weight percent of Zn, and different weight percent of Sn. Aluminum alloy samples in Group 2 contains same weight percent of Mg, Cu, Fe and Si with different weight percent of Sn. The samples were then subjected to corrosion behavior experimentation which includes Tafel plot, corrosion potential and potentiodynamic scan. It was found that alloying with Mg, Cu, Fe, and Si instead of alloying only with Zn and Sn further increases the negative potential, the density of particle distribution and further reduces the corrosion rate of aluminum alloys. The activeness of aluminum alloys also increases when alloyed with Zn, Sn, Mg, Cu, Fe, and Si.
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