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Low temperature fatigue crack propagation in neutron-irradiated type 316 steel and weld metal
Authors:G.J. Lloyd  J.D. Walls  J. Gravenor
Affiliation:UKAEA, Risley Nuclear Power Development Laboratories, Risley, Warrington WAS 6AT, UK;UKAEA, Windscate Nuclear Power Development Laboratories, Sellafield, Cumbria, UK
Abstract:The fast cycling fatigue crack propagation characteristics of type 316 steel and weld metal have been investigated at 380°C after irradiation to 1.72–1.92 × 1020n/cm2 (E>1 MeV) and 2.03×1021n/cm2 (E>1 MeV) at the same temperature. With mill-annealed type 316 steel, modest decreases in the rates of crack propagation were observed for both dose levels considered, whereas for cold-worked type 316 steel irradiation to 2.03 ×1021 n/cm2 (E>1 MeV) caused increases in the rate of crack propagation. For type 316 weld metal, increases in the rate of crack propagation were observed for both dose levels considered.The diverse influences of irradiation upon fatigue crack propagation in these materials are explained by considering a simple continuum mechanics model of crack propagation, together with the results of control tensile experiments made on similarly irradiated materials.
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