Evolution of transiently melt damaged tungsten under ITER-relevant divertor plasma heat loading
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference11 articles.
1. A full tungsten divertor for ITER: Physics issues and design status
2. Material and Power-Handling Properties of Tungsten PFCs after Steady-State Melting and Additional Transient High-Heat-Flux Exposure
3. A high-repetition rate edge localised mode replication system for the Magnum-PSI and Pilot-PSI linear devices
4. ELM simulation experiments on Pilot-PSI using simultaneous high flux plasma and transient heat/particle source
5. Energy flux to the ASDEX-Upgrade diverter plates determined by thermography and calorimetry
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2. The microstructure evolution, damage behavior and failure analysis of fine-grained W-Y2O3 composites under high transient thermal shock;International Journal of Refractory Metals and Hard Materials;2022-09
3. Numerical benchmark of transient pressure-driven metallic melt flows;Nuclear Materials and Energy;2020-12
4. Morphological and nanomechanical changes in tungsten in high heat flux conditions;npj Materials Degradation;2020-10-02
5. Erosion dynamics of tungsten fuzz during ELM-like heat loading;Journal of Applied Physics;2018-04-07
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