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Combined Effect of Alternating Current Interference and Cathodic Protection on Pitting Corrosion and Stress Corrosion Cracking Behavior of X70 Pipeline Steel in Near-Neutral pH Environment

机译:交流干扰和阴极保护对近中性pH环境中X70管道钢蚀腐蚀和应力腐蚀开裂行为的综合作用

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摘要

Influence of alternating current (AC) on pitting corrosion and stress corrosion cracking (SCC) behavior of X70 pipeline steel in the near-neutral pH environment under cathodic protection (CP) was investigated. Both corrosion and SCC are inhibited by −0.775 VSCE CP without AC interference. With the superimposition of AC current (1–10 mA/cm2), the direct current (DC) potential shifts negatively under the CP of −0.775 VSCE and the cathodic DC current decreases and shifts to the anodic direction. Under the CP potential of −0.95 VSCE and −1.2 VSCE, the applied AC current promotes the cathodic reaction and leads to the positive shift of DC potential and increase of cathodic current. Local anodic dissolution occurs attributing to the generated anodic current transients in the positive half-cycle of the AC current, resulting in the initiation of corrosion pits (0.6–2 μm in diameter). AC enhances the SCC susceptibility of X70 steel under −0.775 VSCE CP, attributing to the promotion of anodic dissolution and hydrogen evolution. Even an AC current as low as 1 mA/cm2 can enhance the SCC susceptibility.
机译:研究了X70管线钢在阴极保护(CP)下X70管线钢蚀腐蚀和应力腐蚀开裂(SCC)行为的影响。腐蚀和SCC都受到-0.775 VSCE CP而没有AC干扰。随着AC电流(1-10mA / cm2)的叠加,直流(DC)电位在-0.775 VSCE的CP下负面换量,阴极直流电流降低并转向阳极方向。在-0.95 Vsce和-1.2 Vsce的Cp电位下,应用的交流电流促进阴极反应,并导致直流电位的正偏移和阴极电流的增加。局部阳极溶解发生在AC电流的正半循环中归因于所产生的阳极电流瞬变,导致腐蚀凹坑的启动(直径为0.6-2μm)。 AC增强了X70钢的SCC易感性-0.775 VSCE CP,归因于促进阳极溶解和氢气进化。即使是低至1 mA / cm2的交流电流也可以增强SCC易感性。

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