| Article ID | Journal | Published Year | Pages | File Type |
|---|---|---|---|---|
| 1564946 | Journal of Nuclear Materials | 2014 | 19 Pages |
Abstract
We employ a classic molecular dynamics method to investigate the dissolution and diffusion properties of hydrogen (H) in a Σ5(3 1 0) tilt grain boundary (GB). A maximum binding energy of 2.5 eV and a diffusion barrier of 1.65 eV indicate that GB plays an important role in H trapping. Dynamic simulations with temperature ranging from 600 K to 1200 K verify the diffusion and the aggregation of H in the GB are closely associated with the temperature. Pair radius distribution function analysis suggests a high local GB concentration of H such as 30% at 900 K can lead to a disordered GB structure.
Related Topics
Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
Yi Yu, Xiaolin Shu, Yi-Nan Liu, Guang-Hong Lu,
