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Improving Efficiency of Aluminium Sacrificial Anode Using Cold Work Process

机译:使用冷工艺提高铝牺牲阳极的效率

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Aluminium is one of the preferred materials to be used as sacrificial anode for carbon steel protection. The efficiency of these can be low due to the formation of oxide layer which passivate the anodes. Currently, to improve its efficiency, there are efforts using a new technique called surface modifications. The objective of this research is to study corrosion mechanism of aluminium sacrificial anode which has been processed by cold work. The cold works are applied by reducing the thickness of aluminium sacrificial anodes at 20% and 40% of thickness reduction. The cathodic protection experiments were performed by immersion of aluminium connected to carbon steel cylinder in 3% NaCl solutions. Visual inspections using SEM had been conducted during the experiments and corrosion rate data were taken in every week for 8 weeks of immersion time. Corrosion rate data were measured using weight loss and linear polarization technique (LPR). From the results, it is observed that cold worked aluminium sacrificial anode have a better corrosion performance. It shows higher corrosion rate and lower corrosion potential. The anodes also provided a long functional for sacrificial anode before it stop working. From SEM investigation, it is shown that cold works have changed the microstructure of anodes which is suspected in increasing corrosion rate and cause de-passivate of me surface anodes.
机译:铝是用于碳钢保护的牺牲阳极的首选材料之一。由于形成阳极钝化的氧化物层的形成,这些效率可以很低。目前,为了提高其效率,有努力使用一种称为曲面修改的新技术。本研究的目的是研究已经通过冷加工处理的铝牺牲阳极的腐蚀机制。通过将铝牺牲阳极的厚度以20%和40%的厚度减小来施加冷工程。通过在3%NaCl溶液中浸入碳钢缸中的铝进行阴极保护实验。在实验期间已经进行了使用SEM的目视检查,并且在浸入时间的每周至少服用腐蚀速率数据。使用减肥和线性偏振技术(LPR)测量腐蚀速率数据。从结果中,观察到冷加工铝牺牲阳极具有更好的腐蚀性能。它显示出更高的腐蚀速率和较低的腐蚀潜力。阳极在停止工作之前,还为牺牲阳极提供了长功能。从SEM调查中,表明冷工程改变了阳极的微观结构,这些阳极增加腐蚀速率并导致ME表面阳极的脱离钝化。

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