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- W2056664914 abstract "Abstract Hydrogen diffusion through the wall of cladded reactors has been modelled both during normal operation and during shutdown using a finite difference model. The resulting hydrogen concentration distributions have been studied for reactor vessels constructed of three different steels, one conventional 2·25 Cr1Mo steel, and two V-modified steels, 3 Cr1MoV and 9Cr1MoV, and the probability of hydrogen assisted crack growth and cladding disbonding has been assessed. The simulation results clearly indicate that under the same operating conditions and using the same cool down procedures the V-modified steels have higher hydrogen concentrations but at the same time a reduced probability for hydrogen assisted crack growth and cladding disbonding. An important implication is that the API limit of 23 mol H/m3 for 2·25 Cr1Mo steels may not be applicable for V-modified steels." @default.
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- W2056664914 date "1993-01-01" @default.
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- W2056664914 title "Hydrogen concentration distributions in the wall of pressure vessels made of conventional and V-modified steels" @default.
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- W2056664914 doi "https://doi.org/10.1016/0308-0161(93)90091-7" @default.
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