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Technical Paper

A Hydrogen Problem in Fusion Material Technology

Pages 63-67 | Published online: 09 May 2017

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H. Bolt, A. Brendel, D. Levchuk, H. Greuner & H. Maier. (2006) Materials for plasma facing components of fusion reactors. Energy Materials 1:2, pages 121-126.
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Z. Yao, C. Liu & P. Jung. (2005) Diffusion and Permeation of Deuterium in EUROFER97: Effect of Irradiation and of Implanted Helium. Fusion Science and Technology 48:3, pages 1285-1291.
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Articles from other publishers (16)

Ze Chen, Li Yang, Xunxiang Hu, Brian D. Wirth & Minyou Ye. (2022) MD simulation of the He bubble effect on H retention in BCC iron. Fusion Engineering and Design 180, pages 113184.
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Ze Chen, Xunxiang Hu, Minyou Ye & Brian D. Wirth. (2021) Deuterium transport and retention properties of representative fusion blanket structural materials. Journal of Nuclear Materials 549, pages 152904.
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. 2008. Corrosion Handbook. Corrosion Handbook 1 4 .
P. Vladimirov & A. Möslang. (2006) Irradiation conditions of ADS beam window and implications for window material. Journal of Nuclear Materials 356:1-3, pages 287-299.
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L. Pranevicius, C. Templier, L.L. Pranevicius & D. Milcius. (2005) Influence of surface barriers on hydrogen storage in MgAl films on permeable stainless steel membranes. Vacuum 78:2-4, pages 367-373.
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C. Liu, H. Klein & P. Jung. (2004) Embrittlement of RAFM EUROFER97 by implanted hydrogen. Journal of Nuclear Materials 335:1, pages 77-82.
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R. Brill, F. Koch, J. Mazurelle, D. Levchuk, M. Balden, Y. Yamada-Takamura, H. Maier & H. Bolt. (2003) Crystal structure characterisation of filtered arc deposited alumina coatings: temperature and bias voltage. Surface and Coatings Technology 174-175, pages 606-610.
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J. Henry, X. Averty, Y. Dai, P. Lamagnère, J.P. Pizzanelli, J.J. Espinas & P. Wident. (2003) Tensile properties of 9Cr–1Mo martensitic steel irradiated with high energy protons and neutrons. Journal of Nuclear Materials 318, pages 215-227.
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M.F. Maday, G. Filacchioni & L. Pilloni. (2003) A comparative study about the hydrogen embrittlement susceptibility of Eurofer'97 and conventional 9%cr ferritic/martensitic steels. A comparative study about the hydrogen embrittlement susceptibility of Eurofer'97 and conventional 9%cr ferritic/martensitic steels.
Yu.N. Dolinsky, Yu.N. Zouev, I.A. Lyasota, I.V. Saprykin & V.V. Sagaradze. (2002) Permeation of deuterium and tritium through the martensitic steel F82H. Journal of Nuclear Materials 307-311, pages 1484-1487.
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P. Jung, C. Liu & J. Chen. (2001) Retention of implanted hydrogen and helium in martensitic stainless steels and their effects on mechanical properties. Journal of Nuclear Materials 296:1-3, pages 165-173.
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H. Rauh & H. Ullmaier. (2001) Hydrogen concentrations near cracks in target materials for high-power spallation neutron sources. Journal of Nuclear Materials 295:1, pages 109-120.
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F. Schliefer, Chao Liu & P. Jung. (2000) Diffusion and permeation of hydrogen in low-activation martensitic stainless steel – effect of irradiation. Journal of Nuclear Materials 283-287, pages 540-544.
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Olga V Ogorodnikova, Xavier Raepsaet & Michael A Fütterer. (2000) Tritium permeation through the first wall of the EU-HCPB blanket. Fusion Engineering and Design 49-50, pages 921-926.
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O.V. Ogorodnikova, M.A. Fütterer, E. Serra, G. Benamati, J.-F. Salavy & G. Aiello. (1999) Hydrogen isotope permeation through and inventory in the first wall of the water cooled Pb–17Li blanket for DEMO. Journal of Nuclear Materials 273:1, pages 66-78.
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P Jung. (1998) Hydrogen inventory and embrittlement in low activation steels. Journal of Nuclear Materials 258-263, pages 124-129.
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