Experimental and In-Service Observations of HIC Nucleation and Growth in Pipeline Steel

J. L. González Velázquez, E. Entezari, D. R. López, Manuel Alejandro Beltrán Zúñiga, J. Szpunar
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Abstract

This paper presents the results of experimental and in-service observations of the nucleation and growth of hydrogen-induced cracking (HIC) in hydrocarbon transport pipelines made of type API 5L steel. The experimental work was done by inducing HIC on steel plates by electrochemical cathodic hydrogen charging and using a straight beam ultrasonic inspection technique to observe the crack growth behavior. Scanning electron microscopy was also used to observe the crack nucleation and propagation mechanisms. The study was complemented by the fractographic analysis of a pipe segment removed from a sour gas pipeline after an in-service rupture caused by HIC, so the pipe segment contained a significant group of blisters and laminations caused by HIC. The results of the cathodic charging indicated that HIC cracks nucleated in less than one hour of hydrogen charging at specific non-metallic inclusions and not necessarily the largest ones as commonly thought. It is observed that the HIC cracks propagated by a quasi-cleavage mechanism in transgranular paths, linking to other cracks by ductile tearing. However, after a few hours of hydrogen charging, the crack growth rate dropped to almost zero, and the overall HIC growth was due almost solely to the interconnection of previously formed individual cracks. The examination of the in-service failed pipe showed similar fractographic and growth characteristics as compared to the laboratory-induced ones. It showed that HIC was little affected by the primary stresses and the proximity of other defects and structural discontinuities.
管道钢HIC形核和生长的实验和现场观察
本文介绍了API 5L型钢输油管中氢致裂纹的成核和扩展的实验和现场观察结果。采用电化学阴极充氢法在钢板上诱导HIC,并采用直束超声检测技术观察裂纹扩展行为。用扫描电镜观察了裂纹的形核和扩展机制。该研究还对一段含硫天然气管道在运行中因HIC导致破裂后取出的管段进行了断口分析,发现该管段含有由HIC引起的大量水泡和层压。阴极充电的结果表明,HIC裂纹在特定非金属夹杂物处充氢不到1小时即成核,并不一定是通常认为的最大夹杂物。观察到HIC裂纹以准解理机制在穿晶路径上扩展,并通过韧性撕裂连接其他裂纹。然而,充氢几个小时后,裂纹扩展速率几乎降至零,整体HIC扩展几乎完全是由于先前形成的单个裂纹的互连。对在役失效管道的检查显示出与实验室诱导的管道相似的断口形貌和生长特征。结果表明,HIC受主应力、其他缺陷和结构不连续的邻近程度的影响很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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