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首页> 外文期刊>Electrochimica Acta >Photo-electrochemical studies of the local dissolution of a hydrogen-charged X80 steel at crack-tip in a near-neutral pH solution
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Photo-electrochemical studies of the local dissolution of a hydrogen-charged X80 steel at crack-tip in a near-neutral pH solution

机译:近中性pH溶液裂纹尖端催化X80钢局部溶解的光学电化学研究

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In this work, the photocurrent densities of a pre-cracked X80 pipeline steel under various applied forces in the absence and presence of hydrogen-charging were measured in a near-neutral pH solution through a photo-electrochemical system. Electrochemical impedance spectroscopy (EIS) was also measured on the steel electrode to obtain the local impedance under various test conditions. It was determined that, of the total photocurrent density measured at the crack-tip of the charged steel, the photo-induced current density, hydrogen-enhanced dissolution current density and photo-oxidative current density of hydrogen atoms contribute approximately 65.8%, 12.8% and 21.4%, respectively. An applied force increases the photocurrent density measured at crack-tip due to the enhancing stress concentration and the local electrochemical activity. In the presence of hydrogen-charging, the measured photocurrent density at individual applied force was higher than that measured on the uncharged electrode, which was associated with the hydrogen-induced dissolution current density and the photo-oxidation of hydrogen atoms. Under an identical applied force there was a higher photocurrent density at crack-tip than the region ahead of the crack for both charged and uncharged electrodes due to the high electrochemical activity at the crack-tip, resulting in more hydrogen atoms accumulating locally. The local electrochemical impedance measurements were consistent with the photo-electrochemical results to demonstrate the dependence of local dissolution rate of the steel at crack-tip on the applied force and hydrogen-charging.
机译:在这项工作中,通过光电化学系统在近中性pH溶液中测量在不存在和氢气充电的情况下,在近中性pH溶液中测量前裂化X80管线钢的光电流密度。还在钢电极上测量电化学阻抗光谱(EIS),以在各种试验条件下获得局部阻抗。确定,在带电钢的裂缝尖端测量的总光电流密度,光引起电流密度,氢增强溶解电流密度和光氧化电流密度的氢原子贡献约65.8%,12.8%分别为21.4%。由于增强应力集中和局部电化学活性,施加的力增加了在裂纹尖端测量的光电流密度。在氢气充电的情况下,各自施加力的测量光电流密度高于在不带电电极上测量的光电流密度,其与氢诱导的溶解电流密度和氢原子的光氧化有关。在相同的施加力下,由于裂纹尖端的高电化学活性,在裂纹尖端的裂缝尖端上的光电流密度高于引起的带电和不带电电极的区域,导致局部积聚的氢原子。本地电化学阻抗测量结果与光电化学结果一致,以证明钢在施加力和氢气充电的裂纹上施加钢的局部溶出速率的依赖性。

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