75件の論文が見つかりました。論文は出版年月日順に表示しています。(ヘルプ) | |
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緒形俊夫, D.Evans, 緒形俊夫, D.Evans. VAMAS Tests of Structural Materials on Aluminum Alloy Composite Materials at CryogenicTemperatures. Advances in Cryogenic Engineering(materials). 42 (1996) 277-284 | |
春山富義, 平林洋美, 石郷岡猛, 石山敦士, 川手剛雄, 西嶋茂宏, 野口隆志, 荻野治, 岡崎治, 佐藤明男, T. Haruyama, K. Fujioka, H. Hirabayashi, T. Ishigohka, A. Ishiyama, Y. Kawate, S. Nishijima, T. Noguchi, O. Ogino, H. Ogiwara, O. Okazaki, A. Sato. What Happened to Cryogenic and Superconducting Equipment in the Great Hanshin Earthquake. Advances in Cryogenic Engineering. 41 (1996) 1881-1887 10.1007/978-1-4613-0373-2_238 | |
梅澤修, 緒形俊夫, 由利哲美, 長井寿, 石川圭介. Review of High Cycle Fatigue Properties of Structural Materials at Cryogenic Temperatures.. Advances in Cryogenic Engineering Materials. (1994) 1231-1238 | |
TAKEUCHI, Takao, 井上廉, 小菅通雄, IIJIMA, Yasuo, 渡辺和雄. V3Si Multifilamentary Superconductor with High Overall Jc.. Advances in Cryogenic Engineering Materials. (1994) 891-898 | |
TAKEYA, Hiroyuki, J.O.Moorman, V.K.Pecharsky, S.K.Malik, C.B.Zimm, J.O.Moorman, V.K.Pecharsky, S.K.Malik, C.B.Zimm. New Magnetiv Refrigeration Materials for the Liquegaction of Hydrogen. Advances in Cryogenic Engineering. 39 (1994) | |
緒形俊夫, 長井寿, 石川圭介, 柴田浩司, 村瀬暁. VAMAS Second Round Robin Test of Structural Materials at Liquid Helium Temperature.. Advances in Cryogenic Engineering Materials. (1992) 69-76 | |
梅澤修, 長井寿, 由利哲美, 緒形俊夫, 石川圭介. High Cycle Fatigue Properties of Titanium Alloys at Cryogenic Temperatures.. Advances in Cryogenic Engineering Materials. (1992) 175-182 | |
梅澤修, 石川圭介, 石川圭介. Deformation Structure in High Cycle Fatigue of 0.1N-32Mn-7Cr Steel at Cryogenic Temperatures.. Advances in Cryogenic Engineering Materials. (1992) 141-148 | |
TAKEUCHI, Takao, 小菅通雄, IIJIMA, Yasuo, 井上廉, 渡辺和雄. Improvements in High Field Properties of Continuous Ultrafine Nb3Al MF Superconductor.. Advances in Cryogenic Engineering Materials. (1990) 361-368 | |
中曽根祐司, 藤田博之, HIRAGA, Keijiro, 石川圭介, 中曽根祐司, 藤田博之, 石川圭介. Electromagnetic Impact Fracture of Ti-6Al-4V Alloy and 25Mn-5Cr-1Ni Steel at 4K. Advance in Cryogenic Engineering,Materials. 34 (1988) 405-412 | |