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- W1980346768 abstract "Abstract Microtensile specimens of neutron-irradiated Type 304 and 316 stainless steel as well as unirradiated and helium-irradiated Type 316 stainless steel were fractured in an HVEM while recording the crack propagation characteristics on videotape. Investigations of the mode of crack opening and the type of fracture were made as a function of tensile test temperature up to 600°C. The following observations and conclusions were made from these experiments. In high dose neutron-irradiated Type 304 specimens the crack propagation mode was essentially pure Mode I especially at elevated temperatures but at room temperature transgranular failure dominated, and at 600°C intergranular failure dominated. In low-dose neutron-irradiated Type 316 specimens Mode I and II cracking occurred with nearly pure Mode II cases occurring only at the elevated test temperature of 600°C. Most of the nearly pure Mode II cracking was long grain boundaries and was observed in unirradiated specimens at all temperatures, in low-dose neutron-irradiated specimens at 600°C, and in helium-irradiated specimens annealed before tensile testing at room temperature. Therefore the embrittled irradiated specimens which failed intergranularly at elevated tensile test temperature did not fail by grain boundary sliding (Mode II) but failed by Mode I cracking. Irradiation tended to cause rigid crack flank displacements in the direction of the macroscopic tensile axis." @default.
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- W1980346768 date "1984-05-01" @default.
- W1980346768 modified "2023-09-24" @default.
- W1980346768 title "Effects of tensile test temperature on the fracture modes of neutron and helium irradiated austenitic stainless steel" @default.
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- W1980346768 doi "https://doi.org/10.1016/0022-3115(84)90630-5" @default.
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