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A Statistical Study on the Effect of Hydrostatic Pressure on Metastable Pitting Corrosion of X70 Pipeline Steel

机译:静水压力对X70管线钢亚稳态点蚀的影响的统计研究

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摘要

Hydrostatic pressure effects on pitting initiation and propagation in X70 steel are investigated by evaluating metastable pitting probability using electrochemical methods and immersion corrosion tests in containing chlorine ion solution. Potentiodynamic tests indicated that hydrostatic pressure can decrease the breakdown potential and lead to a reduced transpassivity region. Metastable test results revealed that hydrostatic pressure can increase metastable pitting formation frequency and promote stabilization of metastable pitting growth. Electrochemical impedance spectroscopy (EIS) results indicate that Hydrostatic pressure decreases the charge transfer resistance and increases the dissolution rate within the cavities. Corrosion test results also indicated that pitting initiation and propagation are accelerated by hydrostatic pressure. Result validity was verified by evaluating metastable pitting to predict pitting corrosion resistance.
机译:通过使用电化学方法和在含氯离子溶液中的浸没腐蚀试验评估亚稳点蚀概率,研究了静压对X70钢中点蚀萌生和扩展的影响。电位动力学测试表明,静水压力可以降低击穿电位,并导致减小的穿透性区域。亚稳态试验结果表明,静水压力可以增加亚稳态点蚀的形成频率,并促进亚稳态点蚀的稳定。电化学阻抗谱(EIS)结果表明,静水压力降低了电荷转移阻力,并增加了腔内的溶解速率。腐蚀测试结果还表明,静水压力会加速点蚀的产生和扩散。通过评估亚稳态点蚀以预测点蚀耐蚀性来验证结果的有效性。

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