Nerea
Ordas Mur
Investigadora Principal
Max Planck Institute of Plasma Physics
Garching bei München, AlemaniaPublicaciones en colaboración con investigadores/as de Max Planck Institute of Plasma Physics (16)
2019
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Deuterium retention in tungsten based materials for fusion applications
Nuclear Materials and Energy, Vol. 18, pp. 245-249
2018
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Self-passivating tungsten alloys of the system W-Cr-Y for high temperature applications
International Journal of Refractory Metals and Hard Materials, Vol. 73, pp. 29-37
2017
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Self-passivating W-Cr-Y alloys: Characterization and testing
Fusion Engineering and Design, Vol. 124, pp. 1118-1121
2016
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Manufacturing and testing of self-passivating tungsten alloys of different composition
Nuclear Materials and Energy, Vol. 9, pp. 422-429
2014
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Oxidation behaviour of bulk W-Cr-Ti alloys prepared by mechanical alloying and HIPing
Fusion Engineering and Design
2013
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A brief summary of the progress on the EFDA tungsten materials program
Journal of Nuclear Materials, Vol. 442, Núm. 1-3 SUPPL.1
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Powder metallurgical processing of self-passivating tungsten alloys for fusion first wall application
Journal of Nuclear Materials, Vol. 442, Núm. 1-3 SUPPL.1
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Recent progress in research on tungsten materials for nuclear fusion applications in Europe
Journal of Nuclear Materials, Vol. 432, Núm. 1-3, pp. 482-500
2012
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Self-passivating tungsten based alloys obtained by hip for application in fusion reactors beyond ITER (Demo)
Proceedings of the International Euro Powder Metallurgy Congress and Exhibition, Euro PM 2012
2011
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Compilation of erosion yields of metal-doped carbon materials by deuterium impact from ion beam and low temperature plasma
Journal of Nuclear Materials
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Manufacturing of self-passivating W-Cr-Si alloys by mechanical alloying and HIP
Fusion Engineering and Design, Vol. 86, Núm. 9-11, pp. 1719-1723
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Self-passivating bulk tungsten-based alloys manufactured by powder metallurgy
Physica Scripta T
2009
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Improvement of thermal shock resistance of isotropic graphite by Ti-doping
Journal of Nuclear Materials, Vol. 386-388, Núm. C, pp. 805-808
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Ti-doped isotropic graphite: A promising armour material for plasma-facing components
Journal of Nuclear Materials, Vol. 386-388, Núm. C, pp. 801-804
2004
2002
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Improvement of the thermo-mechanical properties of fine grain graphite by doping with different carbides
Journal of Nuclear Materials, Vol. 307-311, Núm. 2 SUPPL., pp. 1282-1288