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- W1966374627 abstract "Abstract Transmission electron microscnpe studies of Nb and Nb-1Zr alloy irradiated to a fast neutron fluence of 2.5 × 1022 n/cm2 at 425°, 585°, and 790°C revealed the presence of voids in Nb at all three irradiation temperatures and unusually large voids in the Nb-1Zr irradiated at 790°C. No voids were observed in the Nb-1Zr irradiated at 425°C and 585°C. The voids in Nb irradiated a t 425°C and 585°C were completely annealed after one hour at 1230°C (∼0.55 Tm,) whereas complete annealing of the voids in Nb irradiated at 790°C occurred after one hour at 1380°C (∼ 0.60 Tm). The anneals at 1230°C and 1380°C for the Nb-1Zr alloy irradiated at 790°C served to increase tlie void size and decrease the void concentration. All evidence of the high concentration of small dislocation loops present in the Nb-lZr alloy irradiated at 425°C and 585°C was absent after annealing at 1230°C. Microhiardness measurements of both materials indicated that the significant radiation induced strengthening of Nb and Nb-1Zr at 425..." @default.
- W1966374627 created "2016-06-24" @default.
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- W1966374627 date "1974-01-01" @default.
- W1966374627 modified "2023-09-25" @default.
- W1966374627 title "Voids in neutron irradiated and annealed niobium and niobium-1% zirconium alloy" @default.
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- W1966374627 doi "https://doi.org/10.1080/00337577408232411" @default.
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