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- W1997528541 abstract "Tensile properties of high-purity Fe–50Cr and Fe–50Cr–8W alloys irradiated by neutrons have been investigated. The behavior of precipitate formation on dislocation loops in high-purity Fe–(9–70)Cr alloys has been examined during 1 MeV electron irradiation in a high voltage electron microscope. The neutron irradiation was performed at 673, 773 and 873 K in the Modified Japan Research Reactor-3 (JRR-3M) to about 0.4 dpa. In the Fe–50Cr and Fe–50Cr–8W alloys irradiated at 673 K, no elongation was observed in the test performed at 673 K. The elongations were observed to recover in the tensile test at 873 K. They also recovered largely after a heat treatment at 873 K for 10 h. However, heat treatment at 873 K for 10 h hardly improved the ductility for the Fe–50Cr alloy irradiated at 873 K. The defect clusters formed at 873 K by the irradiation were relatively stable. Moiré fringe contrast due to the precipitate formation on dislocation loops was observed in the Fe–(9–70)Cr alloys irradiated by electrons at temperatures lower than about 773 K. The precipitates were identified as α′-phase in the Fe–(9–30)Cr alloys, but as α-phase in the Fe–70Cr alloy. The loops formed in Fe–(9–70)Cr alloys were of two types: either on {100} planes with Burgers vector b = a〈100〉 or on {111} planes with b = (a/2)〈111〉. Their number density decreased with irradiation temperature." @default.
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- W1997528541 date "2002-01-01" @default.
- W1997528541 modified "2023-09-24" @default.
- W1997528541 title "Effects of Radiation on Tensile Properties and Damage: Microstructures in High-Purity Fe-(9-70)Cr Alloys" @default.
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- W1997528541 doi "https://doi.org/10.1002/1521-396x(200201)189:1<79::aid-pssa79>3.0.co;2-7" @default.
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