材料科学
渗透
微观结构
扩散
回火
马氏体
热扩散率
氢
猝灭(荧光)
有效扩散系数
晶界扩散系数
电化学
冶金
热力学
晶界
化学
物理化学
荧光
放射科
电极
膜
有机化学
磁共振成像
量子力学
物理
医学
生物化学
作者
L. Moli-Sanchez,J. Chêne,Elke Leunis,J. Chêne,M. Wéry
标识
DOI:10.4028/www.scientific.net/ddf.323-325.485
摘要
The electrochemical permeation technique was used to evaluate the effect of the microstructure on hydrogen diffusivity and hydrogen trapping at room temperature in martensitic steels. A detailed study of the electrochemical permeation technique was first performed in order to identify the boundary conditions of a permeation test in the selected experimental set-up. The validity of the apparent diffusion coefficient derived from this test is also discussed. A 34CrMo4 quenched steel has been selected and designed at three tempering temperatures (200°C, 540°C and 680°C) in order to obtain three different microstructures. According to permeation measurements, H diffusion strongly depends on the microstructure. The material tempered at 540°C exhibits the smallest diffusion coefficient and the largest fraction of reversible traps at room temperature.
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