Damage associated with interactions between microstructural characteristics and hydrogen/methane gas mixtures of pipeline steels

材料科学 氢脆 天然气 铁氧体(磁铁) 甲烷 脆化 珠光体 脆性 极限抗拉强度 冶金 延展性(地球科学) 复合材料 微观结构 奥氏体 化学 腐蚀 蠕动 有机化学
作者
Thanh Tuan Nguyen,Kyung-Oh Bae,Jaeyeong Park,Seung Hoon Nahm,Un Bong Baek
出处
期刊:International Journal of Hydrogen Energy [Elsevier BV]
卷期号:47 (73): 31499-31520 被引量:6
标识
DOI:10.1016/j.ijhydene.2022.07.060
摘要

There is no common standard for blended hydrogen use in the natural gas grid; hydrogen content is generally based on delivery systems and end-use applications. The need for a quantitative evaluation of hydrogen-natural gas mixtures related to the mechanical performance of materials is becoming increasingly evident to obtain long lifetime, safe, and reliable pipeline structures. This study attempts to provide experimental data on the effect of H2 concentration in a methane/hydrogen (CH4/H2) gas mixture used in hydrogen transportation. The mechanical performance under various blended hydrogen concentrations was compared for three pipeline steels, API X42, X65, and X70. X65 exhibited the highest risk of hydrogen-assisted crack initiation in the CH4/H2 gas mixture in which brittle fractures were observed even at 1% H2. The X42 and X70 samples exhibited a significant change in their fracture mechanism in a 30% H2 gas mixture condition; however, their ductility remained unchanged. There was an insignificant difference in the hydrogen embrittlement indices of the three steels under 10 MPa of hydrogen gas. The coexistence of delamination along with the ferrite/pearlite interface, heterogeneous deformation in the radial direction, and abundance of nonmetallic MnS inclusions in the X65 sample may induce a high stress triaxiality at the gauge length at the beginning of the slow strain rate tensile process, thereby facilitating efficient hydrogen diffusion.
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