Distribution of hydrogen atoms at metallurgical microphases of X52 pipeline steel studied by scanning Kelvin probe force microscopy and finite element modelling

Qing Hu, Yuan Li, Y. Frank Cheng
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Abstract

Abstract The work combined scanning Kelvin probe force microscopy measurements and finite element modelling to study the diffusion and distribution of hydrogen (H) atoms at metallurgical microphases contained in X52 pipeline steel. Results show that the pearlite contained in the steel is more stable than the ferrite during electropolishing, as indicated by the measured topographic profiles and Volta potentials. The hydrogen (H)-charging enhances the electrochemical activity of both pearlite and ferrite, as shown by increased Volta potential and thus the decreased work function. As the H-charging time increases, the Volta potentials of both phases further increase, implying that their activities increase with the H-charging time. The pearlite has a greater Volta potential and thus a lower work function than the ferrite. This is associated with more H atoms accumulating at the pearlite than at the ferrite. The H atom diffusion and accumulation are affected by H diffusivity at phase boundaries, H-trap binding energy and the number of traps in the steel.
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利用扫描开尔文探针力显微镜和有限元模拟研究了X52管线钢冶金微相中氢原子的分布
摘要结合扫描开尔文探针力显微镜测量和有限元模拟,研究了X52管线钢冶金微相中氢原子的扩散和分布。结果表明,在电抛光过程中,钢中的珠光体比铁素体更稳定。氢(H)充电增强了珠光体和铁氧体的电化学活性,表现为伏特电位的增加和功函数的减小。随着h -充电时间的增加,两相的Volta电位进一步增大,表明它们的活度随h -充电时间的增加而增加。珠光体比铁氧体具有更大的伏特电位,因此功函数更小。这与珠光体上的氢原子比铁素体上的氢原子多有关。钢中H原子的扩散和积累受相边界H扩散系数、H阱结合能和H阱数目的影响。
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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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