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In-situ annealing of self-ion irradiation damage in tungsten

Abstract:
In our earlier work [1] microstructural evolution in tungsten under self-ion irradiation was investigated as a function of temperature and dose by in-situ 150 keV W+ ion irradiations on the IVEM-Tandem facility at Argonne National Laboratory (ANL). The present work focuses on the thermal stability of this damage. Thin foils of tungsten were irradiated at room temperature (R.T.) to fluences up to 1018 W+m-2 (∼ 1.0 dpa) and were then annealed in-situ for up to 120 min at temperatures between 300 and 800°C. We found that: (1) loops with Burgers vectors <111> and <100> coexist during annealing; (2) <100> is not a stable loop configuration above 300°C and the fraction of such loops decreased with increasing temperature and/or time; (3) changes in loop populations during annealing were very sensitive to temperature, but less sensitive to time. The majority of changes occurred within 15 min, and were associated with the loss of small (1-2 nm) dislocation loops. The origin of these trends is discussed by considering defect mobility and the energetics of defect configurations predicted by previous DFT calculations [2].
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1557/opl.2014.732

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Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author


Publisher:
Cambridge University Press
Host title:
MRS Online Proceedings Library
Journal:
Materials Research Society Symposium Proceedings More from this journal
Volume:
1712
Pages:
33-39
Publication date:
2015-07-01
Acceptance date:
2014-04-21
DOI:
EISSN:
1946-4274
ISSN:
0272-9172
ISBN:
9781510805682


Keywords:
Pubs id:
pubs:512998
UUID:
uuid:523414ea-eae1-4a75-b2eb-3057b3467d99
Local pid:
pubs:512998
Source identifiers:
512998
Deposit date:
2016-05-24
ARK identifier:

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