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Effect of Microstructural Defects on Hydrogen Absorption for Steels in Acidic Sulfate Solution

机译:显微组织缺陷对酸性硫酸盐溶液中钢吸收氢的影响

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Effect of hardness of steels on hydrogen absorption behavior has been investigated by means of conventional electrochemical hydrogen permeation test. Empirical transient curves of hydrogen permeation current density were agreed with the theoretical one on the basis of Fick's second law with a fixed hydrogen concentration at the hydrogen absorption surface, C_0, at any time. The fact suggests quasi-equilibrium condition to the absorption-desorption reaction of hydrogen at the surface, and that correlation between C_0 and hydrogen absorption rate. As an analytical result of the transient, a diffusion coefficient of hydrogen, D, decreased with an increase in a hardness of the steel. On the other hand, the value of C_0 increased with an increase in the hardness. There was a good positive correlation between C_0 and an inverse of D in spite of difference in the hardness and the additional element. The fact may suggest that the microstructural defects attract hydrogen both in the bulk and on the surface of the steel, and the effect promotes hydrogen ad-atom absorbing into the iron specimen.
机译:通过常规的电化学氢渗透试验研究了钢的硬度对氢吸收行为的影响。氢渗透电流密度的经验瞬态曲线与理论曲线一致,这是基于菲克第二定律的,该定律可以随时在氢吸收表面C_0处固定氢浓度。事实表明表面氢吸收-解吸反应的准平衡条件,以及C_0和氢吸收速率之间的相关性。作为瞬态的分析结果,氢的扩散系数D随着钢的硬度的增加而降低。另一方面,C_0的值随着硬度的增加而增加。尽管硬度和附加元素有所不同,但C_0与D的倒数之间存在良好的正相关。这一事实可能表明,微观结构缺陷在钢的整体和表面上都吸引了氢,这种作用促进了氢原子吸附到铁试样中。

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