Cracking behavior of tungsten armor under ELM-like thermal shockloads II: A revised prediction for crack appearance map
Author:
Funder
Euratom Research and Training
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,Materials Science (miscellaneous),Nuclear and High Energy Physics
Reference15 articles.
1. High Heat Flux Performance of Plasma Facing Materials and Components under Service Conditions in Future Fusion Reactors
2. High heat flux components—Readiness to proceed from near term fusion systems to power plants
3. Comparison of the thermal shock performance of different tungsten grades and the influence of microstructure on the damage behaviour
4. Performance of different tungsten grades under transient thermal loads
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1. Effect of radiation defects on grain boundary evolution under shock loading;Journal of Materials Research and Technology;2024-07
2. Long-term plasma exposure of ITER-like W/Cu monoblocks with pre-damaged surfaces in EAST experiments;Nuclear Fusion;2024-06-03
3. Evolution of tungsten degradation under different cyclic ELM-like high heat flux plasma;Journal of Nuclear Materials;2024-01
4. Visualizations of the carbon interphase influence on the ablated fracture morphology of carbon/carbon composites at pore scale;Corrosion Science;2022-06
5. Impact of ELM mitigation on the ITER monoblock thermal behavior and the tungsten recrystallization depth;Nuclear Materials and Energy;2021-06
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