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Effect of Stress on Corrosion at Crack Tip on Pipeline Steel in a Near-Neutral pH Solution

机译:中性pH溶液中应力对管线钢裂纹尖端腐蚀的影响

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摘要

In this work, the local corrosion at crack tip on an API 5L X46 pipeline steel specimens was investigated under various applied loads in a near-neutral pH solution. Electrochemical measurements, including potentiodynamic polarization and electrochemical impedance spectroscopy, combined with micro-electrochemical technique and surface characterization, were conducted to investigate the effect of stress on local anodic solution of the steel at the crack tip. The stress corrosion cracking of the steel was dominated by an anodic dissolution mechanism, while the effect of hydrogen was negligible. The applied load (stress) increased the corrosion rate at the crack tip, contributing to crack propagation. The deposit of corrosion products at the crack tip could protect somewhat from further corrosion. At sufficiently large applied loads such as 740 N in the work, it was possible to generate separated cathode and anode, further accelerating the crack growth.
机译:在这项工作中,研究了API 5L X46管线钢试样在接近中性的pH溶液中各种施加载荷下裂纹尖端的局部腐蚀。进行了电位势极化和电化学阻抗谱等电化学测量,结合微电化学技术和表面表征,研究了应力对裂纹尖端钢局部阳极溶液的影响。钢的应力腐蚀开裂主要受阳极溶解机制的影响,而氢的影响可忽略不计。施加的载荷(应力)增加了裂纹尖端的腐蚀速率,从而导致裂纹扩展。裂纹尖端处腐蚀产物的沉积可以在某种程度上防止进一步腐蚀。在工作中施加足够大的负载(例如740 N)时,有可能产生分离的阴极和阳极,从而进一步加速了裂纹的发展。

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