Fusion Materials Development at Forschungszentrum Jülich
Author:
Affiliation:
1. Institut für Energie und Klimaforschung Forschungszentrum Jülich GmbH 52425 Jülich Germany
2. Department of Engineering Physics University of Wisconsin–Madison Madison WI 53706 USA
Funder
FP7 Fusion Energy Research
H2020 Euratom
Publisher
Wiley
Subject
Condensed Matter Physics,General Materials Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/adem.201901376
Reference186 articles.
1. Materials for DEMO and reactor applications—boundary conditions and new concepts
2. D.Stork P.Agostini J. L.Boutard D.Buckthorpe E.Diegele S. L.Dudarev S.Gonzalez A.Ibarra C.Linsmeier G.Marbach B.Raj Assessment of the EU R&D Programme on DEMO Structural and High-Heat Flux Materials Final Report of the Materials Assessment Group Technical Report EFDA(12)52/7.2 EFDA 2012.
3. DEMO divertor limitations during and in between ELMs
4. Developing structural, high-heat flux and plasma facing materials for a near-term DEMO fusion power plant: The EU assessment
5. Advanced tungsten materials for plasma-facing components of DEMO and fusion power plants
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2. Semi-analytical modeling of prompt redeposition in a steady-state plasma;Nuclear Fusion;2024-08-30
3. Tungsten Wire—From Lamp Filaments to Reinforcement Fibers for Composites in Fusion Reactors;Advanced Engineering Materials;2024-08-06
4. A potential optical approach for diagnosis of the local magnetic field near the surface of the first wall/divertor tiles by Zeeman effect using polarization-resolved laser-induced breakdown spectroscopy;Nuclear Fusion;2024-06-20
5. Combining Chemical Vapor Deposition and Spark Plasma Sintering for the Production of Tungsten Fiber‐Reinforced Tungsten (Hybrid – Wf/W);Advanced Engineering Materials;2024-04-28
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