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- W2088141047 abstract "Fusion reactor coils, located in areas where they will be only partially shielded, must be fabricated from materials which are as resistant to radiation as possible. They will probably incorporate resistive conductors with either water or cryogenic cooling. Inorganic insulators have been recommended for these situations, but the possibility exists that some organic insulators may be usable as well. Five insulator materials were investigated in this work, two containing E-glass cloth (contains B2O3) and three containing S-glass cloth (boron free). Disks of these materials were irradiated in two capsules in the Advanced Test Reactor at 325 K to a gamma dose of over 3.2 × 109 Gy, a fast neutron fluence of 3.5 × 1023 n/m2 (E > 1.0 MeV), and a total neutron fluence of 3.5 × 1024 n/m2 for the lower fluence capsule. Following irradiation, compressive fatigue tests were made at room temperature on all five candidate materials. No failures were observed for the three insulators containing S-glass when cycled to a maximum stress of 345 MPa (50 ksi) for over 1.5 × 105 cycles. In comparison, the G-11CR failed in a few cycles at the lowest stress level applied and the G-10 failed after a number of cycles which varied according to the applied stress level. Electrical resistivity measurements were also made; G-10 showed the largest decrease, and the materials containing S-glass showed the smallest decrease in resistivity due to irradiation. These insulators containing S-glass have given encouraging results for fusion magnet applications and should receive further consideration." @default.
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- W2088141047 date "1984-05-01" @default.
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- W2088141047 title "Tests on irradiated magnet insulator materials" @default.
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- W2088141047 doi "https://doi.org/10.1016/0022-3115(84)90271-x" @default.
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