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Corrosion electrochemical behavior of brass tubes in circulating cooling seawater

机译:循环冷却海水中黄铜管的腐蚀电化学行为

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Electrochemical impedance spectroscopy (EIS) and electrochemical noise (EN) were used to study the corrosion electrochemical behavior of brass tubes in circulating cooling seawater using the developed sensor. EIS study shows that the inhibitor can lead to the formation of corrosion products on metal surface, which will then inhibit the corrosion process. When the flow rate of the seawater increases, the diffusion of oxygen speeds up and the action of filming on HAl77-2 tube accelerates, resulting in decrease of corrosion rate. EN analysis shows that the flow rate of the seawater has little effect on pitting susceptivity of HSn70-1 tube; however the pitting susceptivity of HAl77-2 tube increases with increasing flow rate. Good agreement is observed between the spectral noise resistance R_(sn)(f) calculated from EN data and the modulus of impedance. It is shown that the electrochemical noise technique can be used in corrosion monitoring.
机译:使用开发的传感器,使用电化学阻抗谱(EIS)和电化学噪声(EN)来研究黄铜管在循环冷却海水中的腐蚀电化学行为。 EIS研究表明,抑制剂可导致金属表面腐蚀产物的形成,进而抑制腐蚀过程。当海水流量增加时,氧气的扩散加快,在HAl77-2管上的成膜作用加速,导致腐蚀速率降低。 EN分析表明,海水流量对HSn70-1管的点蚀敏感性几乎没有影响。但是,HAl77-2管的点蚀敏感性随流速的增加而增加。根据EN数据计算出的频谱噪声电阻R_(sn)(f)与阻抗模量之间的一致性很好。结果表明,电化学噪声技术可用于腐蚀监测。

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