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A Nucleation Mechanism of Hydrogen Blister in Metals and Alloys

机译:金属和合金中氢气泡的成核机理

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摘要

The nucleation process of hydrogen blister in metals was investigated through experiments and the mechanism was discussed. Small hydrogen blister in charged Ni-P amorphous coating and steel was studied using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The thermodynamics and kinetics of hydrogen and vacancies in metals are analyzed. Further, an approach of the nucleation mechanism of hydrogen blister is proposed as follows. Atomic hydrogen can induce superabundant vacancies in metals. The superabundant vacancies and hydrogen aggregate into a hydrogen-vacancy cluster (small cavity). The hydrogen atoms in the hydrogen-vacancy cluster become hydrogen molecules that can stabilize the cluster. And the hydrogen blister nucleates. The pressure in the small cavity increases as the hydrogen atoms enter the cavity. The cluster, that is, the hydrogen blister nucleus, grows through vacancies diffusing into it under the action of cluster-hydrogen binding energy and hydrogen pressure. When the blister nucleus grows to a critical size C cr cracks will initiate from the wall of the cavity due to the internal hydrogen pressure.
机译:通过实验研究了氢起泡在金属中的成核过程,并对其机理进行了探讨。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了带电Ni-P非晶态涂层和钢中的小氢气泡。分析了金属中氢和空位的热力学和动力学。此外,提出了一种氢气泡成核机理的方法。氢原子可导致金属中过量的空位。过剩的空位和氢聚集成氢空位簇(小腔)。氢空位簇中的氢原子变成可稳定簇的氢分子。氢起泡成核。随着氢原子进入空腔,小空腔中的压力增加。团簇,即氢起泡核,在团簇-氢结合能和氢压力的作用下,通过空位扩散进入其中而生长。当泡状核增长到临界尺寸C cr 时,由于内部氢压,裂纹将从腔壁开始产生。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第1期|87-97|共11页
  • 作者单位

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

    University of Science and Technology Beijing Beijing 100083 People’s Republic of China;

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