Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7966951 | Journal of Nuclear Materials | 2015 | 6 Pages |
Abstract
We have systematically investigated the dissolution energetics of all 3d-5d transition metal alloying elements (AEs) in tungsten (W) using a first-principles method. It is found that Ti is the easiest one to dissolve with the solution energy of â0.81Â eV in the intrinsic bulk W, while La is the most difficult one with the solution energy as large as 3.91Â eV. The d-electrons play a determining role in the dissolution of AEs in W. We have demonstrated that the solution energies of AEs is a linear monotonic function of strain. The binding energy results indicate that the interaction between AEs is repulsive for the early elements and then becomes attractive for the late elements in each series. This study provides a good reference for developing W materials as a plasma facing material.
Related Topics
Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
Wen-Li Yan, Hong-Bo Zhou, Shuo Jin, Ying Zhang, Guang-Hong Lu,