2008
DOI: 10.1016/j.jnucmat.2008.06.028
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Fracture behavior of austenitic stainless steels irradiated in PWR

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Cited by 36 publications
(26 citation statements)
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“…On the other hand, there was not yet any direct evidence for the fracture mechanism in irradiated ASSs even if the pure IG fractures observed at impact tests at −196 • C [17] might be the case. The fracture character of in-service irradiated 18Cr-10Ni-Ti [3] and CW316L of FTT [17] changed from fully ductile dimples at RT to 90% IG at very low temperature about −100 • C. Reasons for the change are not clear, nor is it clear whether IG fracture occurs by an atomically brittle mode (Type 1, Figure 1a) or by MVC process (Type 2, Figure 1b).…”
Section: Type 1-brittle Intergranular Fracturementioning
confidence: 94%
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“…On the other hand, there was not yet any direct evidence for the fracture mechanism in irradiated ASSs even if the pure IG fractures observed at impact tests at −196 • C [17] might be the case. The fracture character of in-service irradiated 18Cr-10Ni-Ti [3] and CW316L of FTT [17] changed from fully ductile dimples at RT to 90% IG at very low temperature about −100 • C. Reasons for the change are not clear, nor is it clear whether IG fracture occurs by an atomically brittle mode (Type 1, Figure 1a) or by MVC process (Type 2, Figure 1b).…”
Section: Type 1-brittle Intergranular Fracturementioning
confidence: 94%
“…The other case [16,17] of the presence of IG fractures was observed on the specimens of flux thimble tubes (15%CW A316) at low and room temperatures in impact tests ( Figure 4). These FTTs were irradiated in 290-325 • C at PWR to doses from 11 to 73 dpa.…”
Section: Low Temperature Irradiationmentioning
confidence: 98%
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