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Corrosion and Stress Corrosion Cracking Behavior of X70 Pipeline Steel in a CO{sub}2-Containing Solution

机译:X70管线钢在含CO {sub} 2的溶液中的腐蚀和应力腐蚀开裂行为

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摘要

The electrochemical corrosion and stress corrosion cracking (SCC) behaviors of X70 pipeline steel in CO{sub}2-containing solution were studied by electrochemical measurements, slow strain rate tensile tests, and surface characterization. The results found that the electrochemical corrosion of X70 steel in aerated, alkaline solution is an activation-controlled process, and a stable passivity cannot develop on steel. Corrosion rate of the steel increases with the CO{sub}2 partial pressure. The enhanced anodic dissolution due to the additional cathodic reaction in the presence of CO{sub}2, rather than the film-formation reaction, dominates the corrosion process. The mass-transfer step through FeCO{sub}3 deposit is the rate-controlling step in corrosion of the steel. The susceptibility of steel to SCC and the fracture brittleness increase with the CO{sub}2 partial pressure. The enhanced fracture brittleness is attributed to the evolution and penetration of hydrogen atoms into the steel, contributing to crack propagation. The formed deposit layer is not effective in reducing hydrogen permeation due to the loose, porous structure.
机译:通过电化学测量,慢应变速率拉伸试验和表面表征研究了X70管线钢在含CO {sub} 2的溶液中的电化学腐蚀和应力腐蚀开裂(SCC)行为。结果发现,X70钢在充气的碱性溶液中的电化学腐蚀是一个激活控制的过程,并且不能在钢上产生稳定的钝化性。钢的腐蚀速率随CO {sub} 2分压的增加而增加。在CO {sub} 2的存在下,由于额外的阴极反应而不是成膜反应,导致阳极溶解增强,从而在腐蚀过程中占主导地位。通过FeCO {sub} 3沉积物的传质步骤是控制钢腐蚀的速率步骤。钢对SCC的敏感性和断裂脆性随CO {sub} 2分压而增加。断裂脆性的提高归因于氢原子的发展和渗透到钢中,从而促进了裂纹的扩展。由于疏松的多孔结构,所形成的沉积层不能有效地减少氢的渗透。

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