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    X52管线钢不同热处理组织对氢渗透行为及氢扩散路径的影响机制

    Influence Mechanism of Different Heat-Treated Microstructures on the Hydrogen Permeation Behavior and Hydrogen Diffusion Paths in X52 Pipeline Steel

    • 摘要: 采用电化学氢渗透试验评估不同热处理温度下X52管线钢(掺氢天然气输送环境)的氢渗透行为,并利用氢微印技术观测氢的扩散路径。结果表明:氢在X52钢中的扩散路径主要沿非金属夹杂物、珠光体及晶界进行。对于缓慢冷却试样,珠光体含量随温度升高而减少,这导致氢渗透率、溶解度和可逆氢陷阱密度相应降低;而对于快速冷却试样,温度升高使显微组织中的马氏体-奥氏体(M-A)组元尺寸与含量增加,显著提高了氢陷阱密度。

       

      Abstract: Electrochemical hydrogen permeation tests were employed to evaluate the hydrogen permeation behavior of X52 pipeline steel (for hydrogen-blended natural gas service) under different heat treatment temperatures, and hydrogen microprint technique was used to observe hydrogen diffusion paths. The results indicate that hydrogen primarily diffused along nonmetallic inclusions, pearlite, and grain boundaries in X52 steel. For slowly cooled specimens, the pearlite content decreased with increasing temperature, leading to a corresponding reduction in hydrogen permeability, solubility, and reversible hydrogen trap density. In contrast, for rapidly cooled specimens, the increase in heat treatment temperature raised the size and volume fraction of martensiteaustenite (MA) constituents in the microstructure, which significantly enhanced the hydrogen trap density.

       

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