Molecular dynamics simulation of the effect of sub-surface helium bubbles on hydrogen retention in tungsten
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference24 articles.
1. Plasma–wall interaction issues in ITER
2. Materials for the plasma-facing components of fusion reactors
3. Hydrogen and helium trapping in tungsten under single and sequential irradiations
4. Characteristic changes of deuterium retention on tungsten surfaces due to low-energy helium plasma pre-exposure
5. Microscopic damage of tungsten exposed to deuterium–helium mixture plasma in PISCES and its impacts on retention property
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1. Effects of the diffusion path on the effective diffusion coefficient of hydrogen isotope in tungsten with helium bubbles;Journal of Nuclear Materials;2024-10
2. Competitive barrier and trapping effects of helium bubbles on hydrogen isotopes migration behavior in tungsten;Journal of Nuclear Materials;2024-10
3. In-situ TEM characterization of dislocation loops in tungsten under simultaneous helium and hydrogen irradiation;Journal of Nuclear Materials;2024-09
4. He bubble-induced phase transformation of W grain boundaries revealed by accelerated molecular dynamics;Acta Materialia;2024-05
5. Temperature-dependent bubble growth under synergistic interactions of hydrogen and helium in tungsten;Nuclear Fusion;2024-04-12
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