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- W2022946772 abstract "Abstract Fast neutron-induced void swelling has been simulated in both solution heat treated and 20% cold-worked type 316 austenitic stainless steel containing 10 −5 He by irradiation at 525 °C with 20 MeV carbon ions. Transmission electron microscopy was used to determine the volume swelling as a function of irradiation dose. Unlike the results for irradiated nickel no swelling is observed in solution treated 316 steel until a dose of ~ 2 displacements/atom; after this the swelling obeys a (dose) 2 relationship up to ~ 40 displacements/atom where the swelling is ~ 5%. Above this dose the swelling increases less rapidly and tends towards a saturation level of about 12% at 400 displacements/atom. This behaviour is correlated with the evolution of dislocation structure and contrasted with that observed for nickel. The void distribution in cold-worked steel was inhomogeneous and the total swelling was lower by about a factor of two compared with solution treated material. There is evidence for M 23 C 6 carbide formation in the peak swelling region for ion doses above ~ 6 × 10 17 ions cm −2 (i.e. ~ 80 displacements/atom)." @default.
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- W2022946772 date "1971-12-01" @default.
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- W2022946772 title "The dose dependence of void swelling in A.I.S.I. 316 stainless steel during 20 MeV C++ irradiation at 525 °C" @default.
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- W2022946772 doi "https://doi.org/10.1016/0022-3115(71)90164-4" @default.
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