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Investigation of the hydrogen induced cracking behaviour of API 5L X65 pipeline steel

机译:API 5L X65管道钢氢诱导裂解性能的研究

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The effect of microstructural features on the hydrogen induced cracking (HIC) susceptibility of two API 5L X65 pipeline steels were investigated by cathodic charging, hydrogen permeation and hydrogen microprint experiments. Microstructural evaluation after hydrogen charging revealed cracks at the mid-thickness (segregation zone) of both plates. However, more severe cracks were observed in the plate with higher dislocation density and residual stresses. The plate with lower plastic strain and more {111}-oriented grains had less severe cracks. Inclusions found along the crack path, comprising of Si-enriched oxides and carbides contributed to the initiation and propagation of cracks. The variation of the trapping behaviour and hydrogen diffusion through the plates were examined. The results confirmed that a higher ratio of reversible to irreversible traps contributes to increasing HIC severity in steels. Additionally, hydrogen transport through the steels was most prominent along the grain boundaries, indicating the importance of grain boundary character to HIC. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过阴极充电,氢渗透和氢微胶体实验研究了两种API 5L X65管道钢的氢诱导裂解(HIC)敏感性的微观结构特征的影响。氢气充电后的微观结构评估显示了两块板中厚(分离区)的裂缝。然而,在具有较高位错密度和残余应力的板中观察到更严重的裂缝。具有较低塑料应变和更多{111}的板的板具有较小的严重裂缝。沿着裂纹路径发现的夹杂物,包含富含富含富含氧化物和碳化物,有助于裂缝的开始和繁殖。检查通过板的捕获行为和氢气扩散的变化。结果证实,不可逆陷阱的可逆比率更高,有助于增加钢中的HIC严重程度。另外,通过钢的氢气沿晶界最突出,表明晶界性与HIC的重要性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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