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1
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0005093541
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Molecular design of an epoxy for cryogenic temperatures
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Sawa F, Nishijima S, Okada T. Molecular design of an epoxy for cryogenic temperatures. Cryogenics 1995;35:767-9.
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Cryogenics
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2
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0347707843
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Several properties of impregnating epoxy resin used for superconducting coils
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Moriyama H, Inoue Y, Mitsui H, Sanada Y, Kobayashi Y. Several properties of impregnating epoxy resin used for superconducting coils. Adv Cryog Eng 1992;38:339-46.
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3
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13844287600
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Fracture toughness relaxation of epoxy resins at cryogenic temperature
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Sawa F, Nishijima S, Ohtani Y, Matsushita K, Okada T. Fracture toughness relaxation of epoxy resins at cryogenic temperature. Adv Cryog Eng (Mater) 1995;40:1113-9.
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4
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33845380784
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A composite electrical insulation in superconducting magnets
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Yamamoto A, Ueki T, Mukai H, Hosaka S, Toda Y, Makida Y, Mine S, Makishima K. A composite electrical insulation in superconducting magnets. Adv Cryog Eng (Mater) 1998;44:239-44.
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5
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10044251746
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Nojima K, Ueki T, Asano K, Nishijima S, Okada T. Composite matrix for low thermal contraction down to cryogenic temperature. 2035-38.
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Composite Matrix for Low Thermal Contraction Down to Cryogenic Temperature
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Nojima, K.1
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6
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0004860042
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Effect of epoxy cracking resistance on the stability of impregnated superconducting solenoids
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Sekiya H, Moriyama H, Mitsui H, Nishijima S, Okada T. Effect of epoxy cracking resistance on the stability of impregnated superconducting solenoids. Cryogenics 1995;35:809-11.
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7
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0024141733
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Local temperature rise after quench due to epoxy cracking in impregnated windings
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Nishijima S, Takahata K, Okada T. Local temperature rise after quench due to epoxy cracking in impregnated windings. Adv Cryog Eng 1988:3:135-42.
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8
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Ueki T, Nojima K, Asano K, Nishijima S, Okada T. Improvement of fracture toughness of epoxy resin for cryogenic. 2061-64.
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Improvement of Fracture Toughness of Epoxy Resin for Cryogenic
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9
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10044246649
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Toughening of epoxy resin systems for cryogenic use
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Ueki T, Nojima K, Asano K, Nishijima S, Okada T. Toughening of epoxy resin systems for cryogenic use. Adv Cryog Eng (Mater) 1998;44:277-83.
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