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Corrosion of Aluminum Alloy Used as Sacrificial Anode for Steel Embedded Concrete Transmission Tower in Brackish Mud

机译:铝合金用作钢嵌入式混凝土传输塔的牺牲阳极在盐渍泥浆中的腐蚀

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This paper presents the cathodic protection of steel embedded concrete of aluminum based alloy in brackish mud. In this experiment, aluminum based alloys containing 5% zinc, 2% magnesium, and 0.5-2% stannum were fabricated. These elements were added because they produce heat treatable alloys, improved anti friction characteristics, fluidibility, and contain highest strengthening effect on aluminum alloys. These alloys were tested as sacrificial cathodic protection for the standard steel embedded concrete exposed to sea water and brackish mud. Surface morphology of the samples after subjected to corrosion was investigated through scanning electron microscopy (SEM) and anode capacity test (efficiency test). The results revealed that sample with the composition of 95.6% of aluminum, 3.83% of zinc, and 0.19% of stannum showed the best performance hence it was selected for cathodic protection in brackish mud.
机译:本文介绍了钢泥浆中铝合金钢嵌入式混凝土的阴极保护。在该实验中,制造含有5%锌,2%镁和0.5-2%席振亚铝基的铝基合金。增加了这些元素,因为它们产生热处理合金,改善抗摩擦特性,流动性,并含有对铝合金的最高强化作用。这些合金被测试为牺牲阴极保护,用于标准钢嵌入式混凝土暴露于海水和咸泥。通过扫描电子显微镜(SEM)和阳极试验(效率测试)研究了对腐蚀进行腐蚀后样品的表面形态。结果表明,铝的组合物的样品为铝,3.83%的锌,0.19%的斯旺姆表现出最佳性能,因此选择在咸泥浆中的阴极保护。

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