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首页> 外文期刊>Journal of the Brazilian Chemical Society >AC-Induced Corrosion of Underground Steel Pipelines. Faradaic Rectification under Cathodic Protection: I. Theoretical Approach with Negligible Electrolyte Resistance
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AC-Induced Corrosion of Underground Steel Pipelines. Faradaic Rectification under Cathodic Protection: I. Theoretical Approach with Negligible Electrolyte Resistance

机译:交流电引起的地下钢管腐蚀。阴极保护下的法拉第整流:I。​​电解质电阻可忽略不计的理论方法

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Underground pipelines protected with a thick coating and by cathodic polarisation may suffer a serious external corrosion damage in the presence of stray alternating current (AC) voltage induced by high voltage industrial electric transport system, such as power lines or electrified railroads. The origin of the corrosion enhancement comes from the nonlinearity of the currentpotential characteristics of the metal-soil interface. In this paper, we will theoretically evaluate the increase of the corrosion current density and the potential shift induced by a high amplitude AC signal to models of corroding systems: anodic polarisation curves obeying an exponential law with respect to the potential, and cathodic process under the mixed activation-diffusion kinetics. The originality of the present work lies in the use of a relatively small number of dimensionless variables to describe the faradaic rectification for the corrosion potential shift and the corrosion current enhancement. In this article, the effect of the electrolyte resistance was neglected.
机译:在高压工业电力传输系统(例如电力线或电气化铁路)引起的杂散交流电(AC)电压存在的情况下,被厚涂层保护并受到阴极极化保护的地下管线可能遭受严重的外部腐蚀破坏。腐蚀增强的起源来自金属-土壤界面的电流电势特性的非线性。在本文中,我们将在理论上评估腐蚀电流模型对高腐蚀交流信号引起的腐蚀电流密度的增加和电势偏移:阳极极化曲线遵循与电势有关的指数规律,而阴极腐蚀过程则遵循混合活化扩散动力学。本工作的独创性在于使用相对少量的无量纲变量来描述法拉第整流,以进行腐蚀电位移位和腐蚀电流增强。在本文中,耐电解质性的影响被忽略了。

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