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Electrochemical Performance of Organic Zinc-Rich Coating as an Impressed Current Anode System

机译:有机富锌涂层作为外加阳极系统的电化学性能

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摘要

Cathodic protection is a proven technique to halt or minimise corrosion of steel embedded in concrete structures and bridges exposed to chloride from road dicing salt. Cathodic protection for reinforced concrete has generally been limited to impressed current systems due to the relatively high resistivity of concrete and reduced life of galvanic zinc anodes at high chloride content. Zinc rich paints (ZRP) are widely used as an anti-corrosion paint on steel substrates, an alternative to hot-dip galvanising. A type of vapour-permeable zinc-rich paint made of 96% zinc has been proposed for cost effective and low maintenance impressed current cathodic protection of reinforced concrete structures. To evaluate its potential application in practice, the electrical, and electrochemical properties of the material have been investigated. The zinc-rich anode was found to shift the potential of the steel to more negative potentials successfully and satisfy the performance criteria in accordance with BS EN ISO 12696. In this research it is found that the optimum conductivity will be achieved by three coats to produce 280-320 m thickness in order to get a good current distribution in the surface of the anode
机译:阴极保护是一种行之有效的技术,可以阻止或最小化埋在混凝土结构和桥梁中的钢材的腐蚀,这些混凝土和桥梁会受到道路切丁盐的氯化物污染。由于混凝土的相对较高的电阻率和高氯化物含量的电镀锌阳极的寿命缩短,因此对钢筋混凝土的阴极保护通常仅限于外加电流系统。富锌涂料(ZRP)被广泛用作钢基材上的防腐涂料,是热浸镀锌的替代方法。已提出一种由96%的锌制成的可渗透蒸气的富锌涂料,以提高成本效益,并给钢筋混凝土结构提供低维护性的电流阴极保护。为了评估其在实践中的潜在应用,已经研究了该材料的电学和电化学性能。发现富锌阳极可成功地将钢的电势转移到更多的负电势,并满足BS EN ISO 12696的性能标准。在这项研究中,发现通过生产三层镀层可实现最佳电导率厚度为280-320 m,以便在阳极表面获得良好的电流分布

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