Effect of pulse cathodic protection on corrosion mitigation and electrochemical conditions under a simulated coating disbondment on pipeline steel

Hossein Najafi, A. Eslami, M. Golozar, A. Kavian, Mehdi Ahmadi
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引用次数: 4

Abstract

Coating disbondments on pipeline steels are regions with high resistivity where conventional cathodic protection (CP) could not fully protect. Therefore, in an attempt to mitigate this challenge, this study investigates the effect of pulse CP on corrosion mitigation and electrochemical conditions under a simulated coating disbondment on X‐52 pipeline steel. In this regard, conventional and pulse CP of −870 mVSCE were applied to the open mouth of a simulated coating disbondment. For pulse CP, frequencies of 1, 5, and 10 kHz were used. Results showed while the conventional CP was not able to fully protect the 20 cm simulated coating disbondment, for the pulse CP with increase in frequency from 1 to 5 kHz, and from 5 to 10 kHz, improve in CP potential protection under the simulated coating disbondment was achieved. This was accompanied by considerably lower corrosion and a more uniform pH distribution under the simulated coating disbondment.
脉冲阴极保护对管道钢模拟涂层剥离的缓蚀和电化学条件的影响
管线钢的涂层脱落是常规阴极保护不能完全保护的高电阻率区域。因此,为了缓解这一挑战,本研究研究了脉冲CP对X‐52管道钢在模拟涂层剥离下的缓蚀和电化学条件的影响。在这方面,常规和脉冲CP - 870 mVSCE分别应用于模拟涂层剥离的开口。对于脉冲CP,使用频率为1、5和10 kHz。结果表明,常规CP不能完全保护20 cm模拟涂层剥离,而频率从1 ~ 5 kHz和5 ~ 10 kHz增加的脉冲CP在模拟涂层剥离下的CP电位保护得到了改善。在模拟的涂层剥离下,腐蚀程度明显降低,pH分布更均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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