首页> 外文会议>International Hydrogen Conference >FATIGUE CRACK GROWTH RATES OF API X70 PIPELINE STEELS IN PRESSURIZED HYDROGEN GAS COMPARED WITH AN X52 PIPELINE IN HYDROGEN SERVICE
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FATIGUE CRACK GROWTH RATES OF API X70 PIPELINE STEELS IN PRESSURIZED HYDROGEN GAS COMPARED WITH AN X52 PIPELINE IN HYDROGEN SERVICE

机译:API X70管道钢在加压氢气中的疲劳裂纹生长速率与氢气服务中的X52管道相比

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The current ASME B31.12 code used to guide the design of hydrogen pipelines favors the use of API 5L X52, but is being modified to include higher strength steels, such as X70 to enable cost reductions without affecting safety. To provide a scientific basis for code modification, fatigue crack growth (FCG) tests were conducted on an X52 pipeline steel that is currently in service transporting hydrogen gas, as well as two X70 pipeline steels designed for natural gas. Compact tension specimens were tested in hydrogen gas pressurized to 5.5 MPa or 34 MPa. A comparison of these tests, conducted at a cyclic loading frequency of 1 Hz, shows that there is very little difference between the FCG rates of the base metal among the three steels at a given hydrogen pressure. All three metals exhibited some increase in FCG rate at a hydrogen pressure of 34 MPa compared with 5.5 MPa. Analysis of the data provide a rationale for allowing higher strength steels to be used for hydrogen gas transport. A recommendation was made to the ASME B31.12 Committee on Hydrogen Piping and Pipelines to allow higher-strength steels that is based on this and other data acquired at hydrogen pressures ≤ 21 MPa.
机译:目前的ASME B31.12代码用于指导氢水管道的设计有利于API 5L X52的使用,但是被修改为包括更高的强度钢,例如X70,以实现成本降低而不会影响安全性。为了为代码修改提供科学依据,在目前正在运送氢气的X52管道钢上进行疲劳裂纹增长(FCG)测试,以及为天然气设计的两个X70管道钢。紧凑的张力标本在加压至5.5MPa或34MPa的氢气中进行测试。在循环负载频率为1Hz的这些测试的比较表明,在给定的氢气压力下,在三个钢中的基础金属的FCG速率之间存在差异很小。与5.5MPa相比,所有三种金属在34MPa的氢气压力下表现出氢气压力的一些增加。对数据的分析提供了用于允许更高强度钢用于氢气运输的理由。对ASME B31.12氢管道和管道委员会提出了建议,以允许基于该氢气压力≤21MPa的其他数据和其他数据的更高强度钢。

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