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Hydrogen embrittlement effect on the structural integrity of API 5L X52 steel pipeline

机译:氢脆对API 5L X52钢质管道结构完整性的影响

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Hydrogen plays a decisive role in many future energy systems. For this reason, much research has been performed to see the effect of hydrogen on network canalizations. This paper studied the possibility of hydrogen transportation using the natural gas pipeline. In this paper, the effect of hydrogen embrittlement (HE) on the mechanical properties of pipe steels was examined. It appeared that the yield stress and ultimate strength were few sensitive to HE. However, fracture toughness and elongation at failure exhibited a severe decrease. Failure pressure established by different codes involved a flow stress which is a combination of yield stress and flow stress. Pipe defect assessment involved fracture toughness and flow stress upon using Failure Assessment Diagram (FAD) or Crack Driving Force (CDF) methods. In this paper, the consequence of hydrogen embrittlement on the failure and critical pressures of a pipe with a semi-elliptical defect was examined. The influence of assessment method, relative defect depth and working pressure were examined through the comparison of respective safety factors. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢在许多未来的能源系统中起着决定性的作用。由于这个原因,已经进行了许多研究来观察氢对网络渠化的影响。本文研究了使用天然气管道进行氢气运输的可能性。本文研究了氢脆(HE)对管钢力学性能的影响。似乎屈服应力和极限强度对HE几乎不敏感。但是,断裂韧性和断裂伸长率显示出严重降低。由不同规范建立的破坏压力涉及流动应力,该应力是屈服应力和流动应力的组合。使用故障评估图(FAD)或裂纹驱动力(CDF)方法时,管道缺陷评估涉及断裂韧性和流动应力。本文研究了氢脆对具有半椭圆形缺陷的管道的破坏和临界压力的影响。通过比较各安全系数,评估了评估方法,相对缺陷深度和工作压力的影响。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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