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1
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Development of potential low activation ferritic and austenitic steels
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Hayakawa, H.2
Tanimura, M.3
Hishinuma, A.4
Kondo, T.5
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2
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0036942396
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Swelling behavior of TIG-welded F82H IEA heat
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Sawai, T., Wakai., E., Tomita., T., Naito, A. and Jitsukawa, S., "Swelling behavior of TIG-welded F82H IEA heat," J. Nucl. Mater. 307-311(2002)312-316.
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Jitsukawa, S.5
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3
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Low-temperature irradiation effects on tensile and Charpy properties of low-activation ferritic steels
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Shiba, K. and A. Hishinuma., "Low-temperature irradiation effects on tensile and Charpy properties of low-activation ferritic steels," J. Nucl. Mater. 283-287(2000)474-477.
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Shiba, K.1
Hishinuma, A.2
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4
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0020277809
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Nickel-doped ferritic (martensitic) steels for fusion reactor irradiation studies: Tempering behavior and unirradiated and irradiated tensile properties
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ASTM STP 782, ASTM
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Klueh, R. L., Vitek, J. M. and Grossbeck, M. L., "Nickel-doped ferritic (martensitic) steels for fusion reactor irradiation studies: tempering behavior and unirradiated and irradiated tensile properties," Effects of Radiation on Materials: 11th conference, ASTM STP 782, ASTM (1982), pp.648-664.
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Klueh, R.L.1
Vitek, J.M.2
Grossbeck, M.L.3
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5
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0022888779
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Post irradiation tensile behavior of nickel doped ferritic steels
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Klueh, R. L., Maziasz, P. J. and Vitek, J. M., "Post irradiation tensile behavior of nickel doped ferritic steels," J. Nucl. Mater. 141-143(1986)960-965.
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Klueh, R.L.1
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Vitek, J.M.3
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6
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0034539255
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Embrittlement of reduced-activation ferritic/martensitic steels irradiated in HFIR at 300C and 400C
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Klueh, R. L., Sokolov, M. A., Shiba, K., Miwa, Y. and Robertson, P. J., "Embrittlement of reduced-activation ferritic/martensitic steels irradiated in HFIR at 300C and 400C," J. Nucl. Mater. 283-287(2000)478-482.
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7
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0038815367
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to be published
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Ando, M., to be published.
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Ando, M.1
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8
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0036937902
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Evaluation of hardening behavior of ion irradiated reduced activation ferritic/martensitic steels by an ultra-micro-indentation technique
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Ando, M. et al., "Evaluation of Hardening Behavior of Ion Irradiated Reduced Activation Ferritic/Martensitic Steels by an Ultra-Micro-Indentation Technique", J. Nucl. Mater. 307-311(2002)260-265.
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