Development of remote welding techniques for in-pile IASCC capsules and evaluation of material integrity on capsules for long irradiation period

To simulate irradiation assisted stress corrosion cracking (IASCC) behavior by in-pile experiments, it is necessary to irradiate specimens up to a neutron fluence that is higher than the IASCC threshold fluence. Pre-irradiated specimens must be relocated from pre-irradiation capsules to in-pile caps...

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Veröffentlicht in:Journal of nuclear materials 2012-03, Vol.422 (1-3), p.14-19
Hauptverfasser: Shibata, A., Nakano, J., Ohmi, M., Kawamata, K., Nakagawa, T., Tsukada, T.
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Sprache:eng
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Zusammenfassung:To simulate irradiation assisted stress corrosion cracking (IASCC) behavior by in-pile experiments, it is necessary to irradiate specimens up to a neutron fluence that is higher than the IASCC threshold fluence. Pre-irradiated specimens must be relocated from pre-irradiation capsules to in-pile capsules. Hence, a remote welding machine has been developed. And the integrity of capsule housing for a long term irradiation was evaluated by tensile tests in air and slow strain rate tests in water. Two type specimens were prepared. Specimens were obtained from the outer tubes of capsule irradiated to 1.0–3.9×1026n/m2 (E>1MeV). And specimens were irradiated in a leaky capsule to 0.03–1.0×1026n/m2. Elongation more than 15% in tensile test at 423K was confirmed and no IGSCC fraction was shown in SSRT at 423K which was estimated as temperature at the outer tubes of the capsule under irradiation.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2011.11.057