A Review of Fatigue Crack Growth for Pipeline Steels Exposed to Hydrogen.

IF 1.5 4区 工程技术
N Nanninga, A Slifka, Y Levy, C White
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引用次数: 72

Abstract

Hydrogen pipeline systems offer an economical means of storing and transporting energy in the form of hydrogen gas. Pipelines can be used to transport hydrogen that has been generated at solar and wind farms to and from salt cavern storage locations. In addition, pipeline transportation systems will be essential before widespread hydrogen fuel cell vehicle technology becomes a reality. Since hydrogen pipeline use is expected to grow, the mechanical integrity of these pipelines will need to be validated under the presence of pressurized hydrogen. This paper focuses on a review of the fatigue crack growth response of pipeline steels when exposed to gaseous hydrogen environments. Because of defect-tolerant design principles in pipeline structures, it is essential that designers consider hydrogen-assisted fatigue crack growth behavior in these applications.

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管道钢氢暴露疲劳裂纹扩展研究进展。
氢气管道系统提供了一种以氢气形式储存和输送能量的经济手段。管道可以用来将太阳能和风力发电场产生的氢气输送到盐洞储存地点。此外,在氢燃料电池汽车技术成为现实之前,管道运输系统将是必不可少的。由于氢气管道的使用预计会增加,因此需要在加压氢气的存在下验证这些管道的机械完整性。本文对管道钢在气态氢环境下的疲劳裂纹扩展响应进行了综述。由于管道结构的容错设计原则,在这些应用中,设计人员必须考虑氢辅助疲劳裂纹扩展行为。
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来源期刊
自引率
33.30%
发文量
10
期刊介绍: The Journal of Research of the National Institute of Standards and Technology is the flagship publication of the National Institute of Standards and Technology. It has been published under various titles and forms since 1904, with its roots as Scientific Papers issued as the Bulletin of the Bureau of Standards. In 1928, the Scientific Papers were combined with Technologic Papers, which reported results of investigations of material and methods of testing. This new publication was titled the Bureau of Standards Journal of Research. The Journal of Research of NIST reports NIST research and development in metrology and related fields of physical science, engineering, applied mathematics, statistics, biotechnology, information technology.
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