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Radiation Effects and Defects in Solids
Incorporating Plasma Science and Plasma Technology
Volume 144, 1998 - Issue 1-4
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Radiation effects

Development of in-core materials for fast breeder reactors

Pages 233-250 | Received 28 Oct 1997, Published online: 19 Aug 2006

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Hidehito Kinjo, Takeshi Kageyama, Akihiro Kitano & Shin Usami. (2009) Feasibility Study on an Upgraded Future Monju Core Concept with Extended Operation Cycle Length of One Year and Increased Fuel Burnup. Nuclear Technology 167:2, pages 254-267.
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E. A. Little. (2006) Development of radiation resistant materials for advanced nuclear power plant. Materials Science and Technology 22:5, pages 491-518.
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G. V. Prasad ReddyV. KarthikS. Latha, C. N. Venkiteswaran, Divakar Ramachandran & Shaju K. Albert. (2022) Core Materials for Sodium-Cooled Fast Reactors: Past to Present and Future Prospects. Materials Performance and Characterization 11:2, pages 20200208.
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Panagiotis Grammatikopoulos. 2020. Computational Modelling of Nanomaterials. Computational Modelling of Nanomaterials 161 186 .
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P. L. Gao, X. Ju, Y. Xin, Q. S. Cao, Z. M. Guo, L. P. Guo & B. Y. Wang. (2016) Helium-Implanted ODS-Fe Alloy Investigated by Positron-Annihilation Spectroscopy. IEEE Transactions on Plasma Science 44:9, pages 1631-1635.
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P. L. Gao, X. Ju, Y. Xin, Q. S. Cao, P. L. Gao, Y. Xin, Z. M. Guo, L. P. Guo & B. Y. Wang. (2015) Characterization of the defects in oxide dispersion-strengthened iron alloy after helium ion irradiation. Characterization of the defects in oxide dispersion-strengthened iron alloy after helium ion irradiation.
V.D. Vijayanand, K. Laha, P. Parameswaran, M. Nandagopal, S. Panneer Selvi & M.D. Mathew. (2014) Influence of thermo-mechanical treatment on the tensile properties of a modified 14Cr–15Ni stainless steel. Journal of Nuclear Materials 453:1-3, pages 188-195.
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J.L. Gervasoni & S. Segui. (2014) Interaction of hydrogen in carbon matrix with impurities of nickel. Effects of spin fluctuation. International Journal of Hydrogen Energy 39:16, pages 8868-8871.
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Nobuo Nakae, Takayuki Ozawa, Hirokazu Ohta, Takanari Ogata & Hiroshi Sekimoto. (2014) An approach for evaluating the integrity of fuel applied in Innovative Nuclear Energy Systems. Journal of Nuclear Materials 446:1-3, pages 1-9.
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V.D. Vijayanand, P. Parameswaran, M. Nandagopal, S. Panneer Selvi, K. Laha & M.D. Mathew. (2013) Effect of prior cold work on creep properties of a titanium modified austenitic stainless steel. Journal of Nuclear Materials 438:1-3, pages 51-57.
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I. M. Neklyudov & V. N. Voyevodin. (2008) Radiation swelling of modified austenitic steels. Russian Physics Journal 51:4, pages 400-413.
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I. M. Neklyudov & V. M. Voevodin. (2006) Problems of creation of radiation-resistant austenitic steels. Materials Science 42:3, pages 401-411.
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V. Voyevodin, V. Bryk, O. Borodin, I.M. Neklyudov, N. Akasaka & S. Onose. (2005) Features of Swelling in Modified Austenitic Steels. Materials Science Forum 475-479, pages 1437-1440.
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N Akasaka, S Yamashita, T Yoshitake, S Ukai & A Kimura. (2004) Microstructural changes of neutron irradiated ODS ferritic and martensitic steels. Journal of Nuclear Materials 329-333, pages 1053-1056.
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