Zhou Juan, Wu Mingkun, Qiu Jiangbo, Cheng Ran, Tian Mengkui
School of Chemistry and Chemical Engineering, Guizhou University, Guiyang 550025, PR China.
ACS Omega. 2025 Jun 26;10(26):28233-28242. doi: 10.1021/acsomega.5c03111. eCollection 2025 Jul 8.
This study investigated the behavior of HS on the hydrogen embrittlement susceptibility of X80 pipeline steel in hydrogen-doped natural gas and thoroughly discussed the mechanism of its influence. The results indicated that HS accelerated the hydrogen embrittlement of X80 steel, and the higher its content, the more severe the embrittlement of the material. Besides, when HS gas was introduced into the hydrogen-doped natural gas, the fracture in the brittle region near the surface presented a mixture of quasi-cleavage and cleavage fracture morphologies, which exhibited typical hydrogen embrittlement characteristics. Furthermore, it was inferred from the results of mechanical properties and fracture morphology analysis that HS competed with H and CH for adsorption sites at large-angle grain boundaries, which increased the ability of iron atoms to provide electrons to hydrogen molecules adsorbed on the steel surface and thus promoted hydrogen embrittlement.
本研究考察了硫化氢(HS)在掺氢天然气中对X80管线钢氢脆敏感性的影响行为,并深入探讨了其作用机理。结果表明,HS加速了X80钢的氢脆,其含量越高,材料的脆化越严重。此外,当将HS气体引入掺氢天然气中时,表面附近脆性区域的断口呈现准解理和解理断裂形态的混合,表现出典型的氢脆特征。此外,通过力学性能和断口形貌分析结果推断,HS与H和CH在大角度晶界处竞争吸附位点,这增加了铁原子向吸附在钢表面的氢分子提供电子的能力,从而促进了氢脆。