首页> 外文会议>International pipeline conference >CONTINUED MICROSTRUCTURE AND MECHANICAL PROPERTY PERFORMANCE EVALUATION OF COMMERCIAL GRADE API PIPELINE STEELS IN HIGH PRESSURE GASEOUS HYDROGEN
【24h】

CONTINUED MICROSTRUCTURE AND MECHANICAL PROPERTY PERFORMANCE EVALUATION OF COMMERCIAL GRADE API PIPELINE STEELS IN HIGH PRESSURE GASEOUS HYDROGEN

机译:高压气态氢气中商业级API管线钢的连续显微组织和力学性能评估

获取原文

摘要

In spite of current world economic climates, recognition that alternative energy sources to the traditional fossil fuels has to be explored and understood. One potential energy source being researched and developed is hydrogen gas. Currently the most economical method of transporting large quantities of hydrogen gas is through steel pipelines. It is well known that hydrogen embrittlement has the potential to degrade steel's mechanical properties when hydrogen migrates into the steel matrix. Consequently, the current pipeline infrastructure used in hydrogen transport is typically operated in a conservative fashion. This operational practice is not conducive to economical movement of significant volumes of hydrogen gas as an alternative to fossil fuels. The degradation of the mechanical properties of steels in hydrogen service is known to depend on the microstructure of the steel. Understanding the levels of mechanical property degradation of a given microstructure when exposed to hydrogen gas under pressure can be used to evaluate the suitability of the existing pipeline infrastructure for hydrogen service and guide alloy and microstructure design for new hydrogen pipeline infrastructure. To this end, the microstructures of relevant steels and their mechanical properties in relevant gaseous hydrogen environments must be fully characterized to establish suitability for transporting hydrogen. Previously data from a US Department of Energy/private sector funded project to evaluate four commercially available pipeline steels alloy/microstructure performance in the presences of gaseous hydrogen was presented in 2010. Interest in this previous work from industry and the ASME B31.12 Hydrogen Piping and Pipeline Systems codes and standards committee resulted in additional funding for continued evaluation of additional pipeline steel alloys/microstructures in the presences of gaseous hydrogen. Samples from API grades X52 (1960's and current vintage designs), X70 (1980's and current vintage) and X80 along with various samples from an X52 induction bend pipe and one pressure vessel steel A516 Gr 70 are being evaluated. Microstructural characterization, fracture toughness and fatigue testing in the presence of gaseous hydrogen at 800 psig and 3,000 psig are being conducted. This paper will describe the fracture toughness results achieved to date on various commercially available pipeline steels used in the existing North American pipeline infrastructure in the presence of gaseous hydrogen at pressures relevant for transport in pipelines. Microstructures and fracture toughness performances will be compared between these in this study along with those published previously. In addition, recommendations for future work related to gaining a better understanding of steel pipeline performance in hydrogen service will be discussed.
机译:尽管当前存在世界经济气候,但认识到必须探索和理解传统化石燃料的替代能源。正在研究和开发的一种潜在能源是氢气。当前,运输大量氢气的最经济的方法是通过钢管。众所周知,当氢迁移到钢基质中时,氢脆会降低钢的机械性能。因此,当前用于氢气运输的管道基础设施通常以保守的方式进行操作。这种操作实践不利于大量氢气作为化石燃料的替代品进行经济的运输。已知在氢气服务中钢的机械性能的下降取决于钢的微观结构。了解给定微结构在压力下暴露于氢气时机械性能退化的程度可用于评估现有管道基础设施对氢服务的适用性,并指导合金和微结构设计对新的氢管道基础设施的适应性。为此,必须充分表征相关钢的微观结构及其在相关气态氢环境中的机械性能,以建立适合运输氢的能力。之前,美国能源部/私营部门资助的项目的数据曾在2010年进行过评估,该项目评估了在气态氢存在下四种商用管道钢的合金/显微组织的性能。工业界和ASME B31.12氢气管道对该工作的兴趣管道系统规范和标准委员会获得了额外的资金,用于在气态氢存在下继续评估其他管道钢合金/微结构。目前正在评估API等级X52(1960年代和当前年份设计),X70(1980年代和当前年份)和X80的样品,以及来自X52感应弯管和一种压力容器A516 Gr 70的各种样品。在气态氢存在下,在800 psig和3,000 psig的压力下进行微结构表征,断裂韧性和疲劳测试。本文将描述迄今为止在现有北美管道基础设施中使用的各种商用管道钢在气态氢存在下,在与管道运输有关的压力下所获得的断裂韧性结果。将在本研究中与以前发表的文章之间比较显微组织和断裂韧性性能。此外,还将讨论有关未来工作的建议,以更好地了解氢气服务中的钢管性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号