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From the perspective of new technology of blending hydrogen into natural gas pipelines transmission: Mechanism, experimental study, and suggestions for further work of hydrogen embrittlement in high-strength pipeline steels

机译:从天然气管道输送中掺氢新技术视角:高强管道钢氢脆的机理、实验研究及进一步工作建议

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摘要

Blending hydrogen into high-strength pipeline steels for high-pressure transmission may cause materials' hydrogen embrittlement (HE) failure. Although the hydrogen-induced failure of metallic materials has been studied for a long time, the process of hydrogen into the materials, hydrogen-induced delayed failure, and dynamic mechanisms of high strength pipeline steels under high pressure have not been fully understood. This paper aims to provide a detailed review of the latest research on the hydrogen-induced failure of high-strength pipeline steels in hydrogen-blended natural gas transmission. First, introduced the typical hydrogen blending natural gas pipeline transmission projects and their associated research conclusions. Then, described the physical process of the HE in high strength pipeline steels and the principle, development, and latest research progress of typical hydrogen embrittlement mechanisms in detail. Third, reviewed the research methods and progress of experimental and theoretical simulations for the HE in steels, including hydrogen permeation (HP) experiments, hydrogen content measurements, hydrogen distribution detection, mechanical property tests, and molecular dynamics simulations. The shortcomings of existing experimental and theoretical simulation methods in the hydrogen-induced analysis of high-strength natural gas pipeline steels under high pressure are discussed. Finally, the future research directions and challenges of this problem are proposed from three aspects: the multimechanism synergy mechanism, the improvement of experimental methods, and the establishment of a new interatomic multiscale model.
机译:将氢气混合到用于高压传输的高强度管道钢中可能会导致材料的氢脆 (HE) 失效。虽然对金属材料的氢致失效研究已久,但对氢入材料的过程、氢致延迟失效以及高强度管线钢在高压下的动力机理尚未完全了解。本文旨在对高强管道钢在混合天然气输送中氢致破坏的最新研究进行综述。首先,介绍了典型的天然气管道输氢项目及其相关研究结论。然后,详细介绍了HE在高强管线钢中的物理过程以及典型氢脆机理的原理、发展和最新研究进展。第三,综述了钢中HE的实验和理论模拟的研究方法和进展,包括氢渗透(HP)实验、氢含量测量、氢分布检测、力学性能测试和分子动力学模拟。讨论了现有实验和理论模拟方法在高压下高强度天然气管道钢氢致分析中的不足。最后,从多机理协同机制、实验方法的改进和新的原子间多尺度模型的建立3个方面提出了该问题未来的研究方向和挑战。

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