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Corrosion behavior of X80 steel under disbond coating interfered with AC

机译:X80钢下的耐用涂层腐蚀行为干扰AC

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摘要

Purpose This paper aims to research the corrosion behavior of the metal under the disbonded coatings interfered with AC through electrochemical method. Design/methodology/approach The corrosion behavior of the metal under disbond coating interfered with alternate stray current (AC) was studied by electrochemical methods using the rectangular coating disbonded simulator. The obtained data from electrode potential test, electrochemical impedance spectroscopy (EIS) and polarization curves in simulated soil solution indicated that under the natural corrosion condition, the self-corrosion potential and the corrosion current density of the metal at different depths under disbond coating had obviously changed if there was AC interference. Findings The self-corrosion potential of the metal at the same depths under disbond coating shifted negatively with the rising of the AC voltage. Under the condition of cathode polarization, there was still obvious potential gradient with the extension of the deep peeling of the coating gap, and the corrosion current density of the test points was minimum, and the protection effect was best when the cathode protection potential was -1.0 V. When the metal was applied with over-protection, the corrosion rate of the metal increased as AC stray current flowing through it increased. Originality/value This paper used the rectangular aperture device to study the corrosion behavior of X80 steel under the disbonded coatings through electrochemical methods when the AC stray current interference voltage was 0V, 1V, 5V or 10V and the protection potential was 0V, -0.9V, -1.0V, -1.2V or -1.3V, respectively. There is great significance to the safe operation and long-term service of pipeline steel in soil environment.
机译:目的本文旨在通过电化学方法研究干扰AC干扰AC的腐蚀性的腐蚀行为。设计/方法/方法通过使用矩形涂层分离的模拟器通过电化学方法研究了干扰交替杂散电流(AC)的不配合杂交(AC)下的金属的腐蚀行为。从电极电位试验,电化学阻抗谱(EIS)和模拟土壤溶液中的偏振曲线所获得的数据表明,在涂层涂层下不同深度的自腐蚀电位和金属的腐蚀电流密度明显如果存在交流干扰,则改变。在脱粘涂层下的相同深度处发现金属的自腐蚀电位随着AC电压的上升而呈负致负面。在阴极极化的条件下,仍然存在明显的潜在梯度随着涂层间隙的深层剥离而延伸,并且测试点的腐蚀电流密度最小,并且当阴极保护电位是最佳的保护效果 - 1.0 V.当用过保护施加金属时,金属的腐蚀速率随着流过其流动的AC流动电流而增加。原创性/值本文使用矩形光圈装置通过电化学方法研究X80钢在分离涂层下的腐蚀行为,当AC杂散电流干扰电压为0V,1V,5V或10V,保护电位为0V,-0.9V分别为-1.0V,-1.2V或-1.3V。土壤环境中的管道钢安全运行和长期服务具有重要意义。

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