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- W4288905952 abstract "The failure analysis of 316H steel welded joints in sodium-cooled fast reactors at 550 °C under creep-fatigue load with different hold times has been systematically investigated through this work. For the first time, the reason for the difference of cracking failure mechanism between base metal and weld metal was illustrated from the perspective of microstructure evolution. Under various hold times, different damage mechanisms led the fracture surfaces of the samples to exhibit different degrees of tunneling. Meanwhile, due to the existence of a δ-ferrite network in the weld metal, the cracks were deflected, resulting in higher resistance to crack propagation and a more tortuous crack propagation path than those in the base metal. In addition, the nucleation and growth of voids at the grain boundaries were the primary reasons that base material exhibited intergranular crack propagation, and the evolution of ferrite in the weld was a critical reason for the formation of intergranular pores in the welded metal." @default.
- W4288905952 created "2022-07-31" @default.
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- W4288905952 date "2022-11-01" @default.
- W4288905952 modified "2023-09-25" @default.
- W4288905952 title "Investigation on the creep-fatigue crack growth behavior of 316H welded joints in sodium-cooled fast reactors" @default.
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- W4288905952 doi "https://doi.org/10.1016/j.engfailanal.2022.106684" @default.
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