2006
DOI: 10.1520/jai12430
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Mechanical Property Changes in Reactor Vessel Materials Thermally Aged for 209 000 H at 260°C

Abstract: Surveillance materials consisting of a SA-508 Class 2 forging, a Mn–Mo–Ni Linde 80 submerged-arc weld, and an SA-533, Grade B, Class 1, correlation monitor material were thermally aged on a commercial reactor pressure vessel. The materials were exposed to a thermal environment of 260°C for 209000h. This temperature is below the range (minimum of 370°C) where the effects of long-term thermal aging are typically considered relevant. Charpy impact, master curve transition temperature, upper-shelf fracture toughne… Show more

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Cited by 7 publications
(7 citation statements)
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“…Because of its location, the surveillance material was considered to have negligible neutron fluence exposure which was experimentally verified. The bulk compositions of these alloys and the change in mechanical properties during extended aging treatments are given in Table 2 [53]. Small changes in the impact properties were observed, but were generally within the 95% confidence bounds for typical Charpy data [53].…”
Section: Long Term Thermal Agingmentioning
confidence: 73%
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“…Because of its location, the surveillance material was considered to have negligible neutron fluence exposure which was experimentally verified. The bulk compositions of these alloys and the change in mechanical properties during extended aging treatments are given in Table 2 [53]. Small changes in the impact properties were observed, but were generally within the 95% confidence bounds for typical Charpy data [53].…”
Section: Long Term Thermal Agingmentioning
confidence: 73%
“…The bulk compositions of these alloys and the change in mechanical properties during extended aging treatments are given in Table 2 [53]. Small changes in the impact properties were observed, but were generally within the 95% confidence bounds for typical Charpy data [53]. Uppershelf energy showed small variations.…”
Section: Long Term Thermal Agingmentioning
confidence: 78%
See 3 more Smart Citations