材料科学
粒度
脆化
脆性
晶界
晶间断裂
晶界强化
氢
冶金
晶间腐蚀
分子动力学
氢脆
脆性断裂
纳米晶材料
变形(气象学)
断裂(地质)
复合材料
微观结构
纳米技术
腐蚀
化学
计算化学
有机化学
作者
Jiaqing Li,Ziyue Wu,Fang Wang,Liang Zhang,Chilou Zhou,Cheng Lü,Lin Teng,Qifeng Lin
出处
期刊:Materials
[MDPI AG]
日期:2022-06-29
卷期号:15 (13): 4589-4589
被引量:4
摘要
Although hydrogen embrittlement (HE) behavior has been extensively studied in bulk materials, little is known about H-related deformation and the fracture of nanograined materials. In this study, H segregation and HE mechanisms of nanograined Fe with different grain sizes are unveiled, following the employment of classical molecular dynamics simulations. The H segregation ratio increased, but the local H concentration at the grain boundaries (GBs) decreased with decreases in the grain size at a given bulk H concentration. The results demonstrate that H atoms increased the yield stress of nanograined models irrespective of the grain size. Furthermore, it is revealed that brittle fractures were inhibited, and the resistance to HE increased as the grain size decreased, due to the fact that the small-grain models had a lower local H concentration at the GBs and an enhanced GB-mediated intergranular deformation. These results are a clear indication of the utility of grain refinement to resist H-induced brittle failure.
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