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- W2778903965 abstract "The insulation materials used in high field fusion magnets require excellent mechanical properties, high electrical breakdown strength, good thermal conductivity and high radiation tolerance. Previous investigations showed that cyanate ester/epoxy (CE/EP) insulation material, a candidate insulation for fusion magnets, can maintain good mechanical performance at cryogenic temperature after 10 MGy irradiation and has a much longer pot life than traditional epoxy insulation material. In order to quantify the electrical properties of the CE/EP insulation material at low temperature, a cryogenic electrical property testing system cooled by a G-M cryocooler was developed for this study. An insulation material with 40% cyanate ester and 60% epoxy was subjected to 60Co γ-ray irradiation in air at ambient temperature with a dose rate of 300 Gy/min, and total doses of 1 MGy, 5 MGy and 10 MGy. The electrical breakdown strength of this CE/EP insulation material was measured before and after irradiation. The results show that cryogenic temperature has a positive effect on the electrical breakdown strength of this composite, while the influence of 60Co γ–ray irradiation is not obvious at 6.1 K." @default.
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- W2778903965 date "2017-12-01" @default.
- W2778903965 modified "2023-09-22" @default.
- W2778903965 title "Cryogenic electrical properties of irradiated cyanate ester/epoxy insulation for fusion magnets" @default.
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- W2778903965 doi "https://doi.org/10.1088/1757-899x/279/1/012006" @default.
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