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输氢海底管道选材探讨 被引量:10

Discussion on Material Selection of Hydrogen Subsea Pipeline
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摘要 针对国内首条输氢海底管道进行选材探讨,基于对常见的氢致失效形式及机理的分析,参考国内外输氢管道相关的标准规范,并考虑海底管道安装的特殊性,推荐输氢海底管道选用API SPEC 5L X42和X52无缝钢管(PSL2等级优先),采用淬火+回火的热处理工艺。同时,对一些氢脆影响因素进行控制,如合金元素含量、碳当量、管材硬度和非金属夹杂物含量等。可以采用慢应变速率试验、断裂韧性试验、裂纹扩展速率试验、疲劳寿命试验和圆盘压力试验等,对管道材料进行力学性能评价,判断材料在氢环境中的氢脆敏感性,为实际工程应用提供支持。 Aiming at the domestic first hydrogen subsea pipeline,based on the analysis of common hydrogen-induced failure forms and mechanisms,refering to domestic and international relevant standards and codes,and considering the particularity of subsea pipeline installation,the material of hydrogen subsea pipeline is recommended to select using API 5L SPEC X42 and X52 seamless pipes(PSL2 level priority).The heat treatment process of quenching and tempering should be adopted.At the same time,some factors which have influence on hydrogen embrittlement should be controlled,such as the content of alloy elements,carbon equivalent,pipe hardness,non-metallic inclusions and so on.The mechanical properties of pipeline materials can be evaluated by slow strain rate test,fracture toughness test,crack growth rate test,fatigue life test and disk pressure test in the hydrogen environment,so as to judge the hydrogen embrittlement susceptibility of material in hydrogen environment and provide support for practical engineering applications.
作者 李妍 张国庆 阳利军 于萱 钱思成 LI Yan;ZHANG Guoqing;YANG Lijun;YU Xuan;QIAN Sicheng(Offshore Oil Engineering Co.,Ltd.,Tianjin 300451,China)
出处 《腐蚀与防护》 CAS 北大核心 2022年第9期99-102,共4页 Corrosion & Protection
关键词 输氢海底管道 氢致失效 氢脆敏感性 hydrogen subsea pipeline hydrogen induced failure hydrogen embrittlement sensitivity
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  • 1李云涛,杜则裕,陶勇寅,熊林玉.国产X70管线钢及其焊缝的氢致裂纹[J].焊接学报,2004,25(5):104-108. 被引量:17
  • 2郑津洋,开方明,刘仲强,陈瑞,陈长聘.高压氢气储运设备及其风险评价[J].太阳能学报,2006,27(11):1168-1174. 被引量:27
  • 3毛宗强.氢能知识系列讲座(4) 将氢气输送给用户[J].太阳能,2007(4):18-20. 被引量:16
  • 4TABKHI F, AZZARO-PANTEL C, PIBOULEAU L, et al. A Mathematical framework for modeling and evaluating natu- ral gas pipeline networks under hydrogen injection [J]. Inter- national Journal of Hydrogen Energy, 2008 (33) .. 6 222-6 231.
  • 5HAESELDONCKX Dries, D' HAESELEER William. The use of the natural-gas pipeline infrastructure for hydrogen transport in a changing market structure[J]. International Journal of Hydrogen Energy, 2007, (32) : 1 381-1 386.
  • 6MELAINA M W, ANTONIA O, PENEV M. Blending hy- drogen into natural gas pipeline networks: a review of key is- sues[R]. NREL/TP- 5600- 51995, US: National Renew- able Energy Laboratory, 2013: 1-35.
  • 7EIGA. Hydrogen transportation pipelines[R]. IGC Doc 121/ 01/E, Europe: European Industrial Gases Association, 2004 : 1-77.
  • 8CHEN Yaoshan, LIU Ming, WANG Yongyi, et al. Per- formance evaluation of high-strength steel pipeline for high- pressure gaseous hydrogen transportation[R]. CRES-2009- J02-01, US: U.S.DEPARTMENT OF TRANSPORTA- TION, 2009: 1-92.
  • 9SLIFKA Andy. Fatigue measurement of X52 and X100 [R]. New York: Materials Reliability Division, 2011: 1-7.
  • 10The American Society of Mechanical Engineers. Hydrogen piping and pipelines: ASME B31.12[S]. New York: The American Society of Mechanical Engineers, 2014: 1-242.

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