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交流电干扰下X80管线钢的腐蚀电化学行为 被引量:2

Corrosion Electrochemical Behavior of X80 Pipeline Steel under AC Current Interference
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摘要 采用腐蚀电位、动电位极化曲线和微观形貌观察等方法研究交流电干扰对X80管线钢的腐蚀电化学行为影响,采用扫描电镜观测了试样表面腐蚀产物和腐蚀微观形貌。研究结果表明交流电干扰使X80管线钢的腐蚀电位向负方向偏移,随交流电密度的增大,X80管线钢的阳极溶解速率增大,腐蚀产物疏松,腐蚀形态由均匀腐蚀逐渐向局部腐蚀转变。由于交流电的整流效应、交变电场作用以及点蚀的自催化效应等综合作用,交流电干扰管线钢的腐蚀速率加快。 Effects of AC interference on electrochemical behavior of X80pipeline steel wereinvestigated by open circuit potential and potential polarization curve.The surface corrosion productsand corrosion microstructure were observed by scanning electron microscopy(SEM).The results showthat the alternating electrical interference causes the corrosion potential of X80pipeline steel to shift tonegative direction.With the increase of AC current density,the tendency of anode dissolution is moreobvious,and the corrosion pattern of pipeline steel is changed from uniform corrosion to local corrosion.Due to combined effect of rectification effect,the role of alternating electric field and self-catalyzed effectof pitting corrosion,the corrosion rate of the pipeline steel under the alternating current interference wereaccelerated,and the corrosion products are looser.
作者 李明 舒韵 闫茂成 于长坤 孙成 LI Ming;SHU Yun;YAN Mao-cheng;YU Chang-kun;SUN Cheng(Fushun Research Institute of Petroleum and Petrochemicals, SINOPEC, Fushun 113001, China;National Engineering Research Center for Corrosion Control, Environment Corrosion Center, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China)
出处 《全面腐蚀控制》 2017年第8期54-57,79,共5页 Total Corrosion Control
基金 国家材料环境腐蚀平台(2005DKA10400)项目资助
关键词 管道 交流干扰 腐蚀电位 腐蚀形貌 极化曲线 pipeline steel AC interference corrosion potential corrosion morphology polarization curve
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  • 1田家祥,林洪山,张玉龙,李福军,鲍春雷.交流杂散电流腐蚀室内实验[J].大庆石油学院学报,2004,28(6):101-102. 被引量:7
  • 2郭庆茹,何悟忠,左戈,董仲智,陈敬和,李增平,冷旭跃,李振华.电气化铁路对输油管道的干扰及其防护方法的研究[J].石油工程建设,2005,31(4):51-54. 被引量:13
  • 3李威,王禹桥,王爱兵.地铁杂散电流监测中IR降误差的消除方法研究[J].腐蚀与防护,2007,28(6):279-281. 被引量:6
  • 4秦国治,丁量棉,田志明.管道防腐蚀技术[M].北京:化学工业出版社,2004.
  • 5Zakowski K K, Sokolski W. 24-hour characteristic of interaction on pipelines of stray currents leaking from tram tractions[J]. Corrosion Science, 1999,41 (11) : 2103-2108.
  • 6Luca Ardizzon, Paolo Pinato, Dario Zaninelli. Electric traction and electrolytic corrosion: a software tool for stray current calculation[C]//2003 IEEE PES Transmission and Distribution Conference and Exposition, Dallas TX USA: 2003 : 550-551.
  • 7Levin S I, Kharionovsky V V. Causes and frequency of failures on gas mains in the USSR PIPE[J].Pipes Pipelines International, 1993,38(4) : 7-8.
  • 8Ian Cotton, Pete Aylott, Petra Ernst. Stray current control in DC mass transit systems[J]. IEEE Rransaction on Vehicular Technology March, 2005, 54 (2) 722.
  • 9SYJ4020-1988.埋地钢质管道石油沥青防腐层施工及验收规范[S].
  • 10Darowicki K, Krakowiak S, Slepski P. Evaluation of pitting corrosion by means of dynamic electrochemical impedance spectroscopy [J].Electrochimica, 2004, 49 (17):2909-2918.

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