Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5454419 | Journal of Nuclear Materials | 2017 | 7 Pages |
Abstract
Compositionally homogeneous mixed-material layers of Be and W, â¼2 μm thick, and of various W contents (spanning 0-100 at.% W), are produced by thermionic vacuum arc deposition. The layers are exposed to low energy (â¼50 eV), high ion flux (6-8 Ã 1022 mâ2 sâ1) D2-0.1He (10% He) mixed species plasma at 473 K and 1073 K to simulate ITER-like first wall and divertor plasma-material interaction. Surface morphological and compositional analysis is conducted prior and subsequent to plasma exposure. The action of the plasma produces almost complete depletion of Be from the near surface, and this is found regardless of the exposure temperature or initial composition. In the exposure case of 473 K, thermal desorption spectrometry reveals decreased D retention in W rich compositions compared to similar exposure in D2 plasma without He, but no discernable difference is noted in Be rich compositions. At 1073 K, surface enrichment in W, by depletion of the Be, results in He induced W “fuzz” structures for all Be-W compositions explored.
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Authors
I. Jepu, M.J. Baldwin, D. Nishijima, R.P. Doerner, C. Porosnicu, C.P. Lungu, P. Dinca, A. Marin,