Effects of Hydrogen Embrittlement on the Fracture Toughness of High-Strength Steel Structures

S. Agbo, Farhad Davaripour, K. Roy
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Abstract

Blending hydrogen into existing natural gas pipelines is being pursued as a means of delivering hydrogen to markets. However, as stated in ASME B31.12, high-strength steel pipelines under stress can be susceptible to hydrogen embrittlement, which is a phenomenon that could induce brittle fracture in steel. This study proposes a numerical framework using phase-field fracture modelling techniques to model the hydrogen embrittlement phenomenon in high-strength steels. The proposed numerical framework is validated against a Compact Tension experimental test specimen, which is deemed suitable to capture the crack-tip constraint observed in high strength steel. The finite element results show a good agreement with experimental results, which demonstrate the capability of the phase-field fracture model in reasonably predicting hydrogen embrittlement in high-strength steel. As such, the proposed numerical modelling framework could also be applicable to typical high strength steel pipelines.
氢脆对高强钢结构断裂韧性的影响
将氢气混合到现有的天然气管道中,作为向市场输送氢气的一种手段。然而,如ASME B31.12所述,高强度钢管道在应力作用下容易发生氢脆,这是一种可能导致钢脆断的现象。本研究提出了一个使用相场断裂建模技术的数值框架来模拟高强钢中的氢脆现象。通过紧致拉伸试验验证了所提出的数值框架,认为该框架适用于捕捉高强度钢中观察到的裂纹尖端约束。有限元计算结果与试验结果吻合较好,证明了相场断裂模型能够合理预测高强钢的氢脆。因此,所提出的数值模拟框架也适用于典型的高强度钢管道。
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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