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- W2092019469 abstract "This paper presents an analysis of displacement damage produced in niobium, which has potential use as the first wall material of a fusion reactor. Lindhard's formalism was used together with cross sections taken from the UK nuclear data file on niobium. Data sets describing damage energy created at various neutron incident energies were generated. It was calculated that: The ratio of damage density (ie mean damage energy × cross section) at 14 MeV to that at 1 MeV is 35 to 100. The damage energy data sets were integrated over two different neutron spectra in order to compare the total effects. The spectra were taken from: (a) the first wall of a model fusion reactor, with a total flux of 28 × 1015 neutrons/cm2 s; (b) the core centre of the Dounreay Fast Reactor (DFR), total flux 25 × 1015 neutrons/cm2 s. Analysis showed that the number of atomic displacements per atom per year is 165 displacements for spectrum (a); 78 displacements for spectrum (b)." @default.
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- W2092019469 date "1971-08-01" @default.
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- W2092019469 title "The effect of the neutron energy spectrum on neutron displacement damage in niobium" @default.
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- W2092019469 doi "https://doi.org/10.1088/0022-3727/4/8/309" @default.
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