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Corrosion Behavior of Buried Pipeline in Presence of AC Stray Current in Controlled Environment

机译:受控环境中AC杂散电流存在下埋地管道的腐蚀行为

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Alternate current (AC) corrosion is a frequent problem where pipelines share right of way with high power transmission lines, AC powered railed system, and structural components on subsea power units. The magnetic field produced by transmission power lines and AC power generators and converters induces an alternate electric current on the buried pipe; the magnitude of the induced AC being proportional to the voltage and separation distance. It has been reported that AC corrosion can occur even when the cathodic protection (CP) criteria is satisfied, highlighting the fact that AC interactions are not well understood. In the present work, corrosion rates of carbon steel samples in sodium chloride solutions with and without AC at different DC bias potentials were obtained by both electrochemical techniques and weight loss analysis. Results are compared and discussed together with polarization curves to obtain an assessment of electrochemical techniques, which are commonly applied for evaluation of AC induced corrosion. A correlation between corrosion rates obtained from weight loss and electrochemical techniques was obtained by comparing corrosion current densities estimated from weight loss values with those from polarization curves. These results are discussed in the context of differences in the anodic and cathodic Tafel slopes. Additionally, solution analyses were conducted during the test to quantify the ferrous/ferric ion content and solution pH. Stirring and continuous solution replacement were necessary to maintain a constant ferrous/ferric ion content and pH.
机译:替代电流(AC)腐蚀是一种频繁的问题,管道与高功率传输线,交流动力轨道系统和海底动力单元的结构部件的方式。通过传动电力线和交流发电机和转换器产生的磁场在掩埋管道上引起交替电流;诱导的AC的大小与电压和分离距离成比例。据报道,即使在满足阴极保护(CP)标准时,也会发生交流腐蚀,突出AC相互作用并不了解的事实。通过电化学技术和体重减轻分析,获得了在不同DC偏置电位下的氯化钠溶液中氯化钠溶液中碳钢样品的腐蚀速率。比较结果,与偏振曲线一起进行讨论,以获得电化学技术的评估,这通常用于评估AC诱​​导的腐蚀。通过将从重量损失值估计的腐蚀电流密度与来自偏振曲线的那些相比,获得了从重量损失和电化学技术获得的腐蚀速率之间的相关性。这些结果在阳极和阴极Tafel斜坡的差异的背景下讨论。另外,在试验期间进行溶液分析以定量铁/铁​​离子含量和溶液pH。搅拌和连续溶液置换是保持恒定的金属/铁离子含量和pH。

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