Effect of carbon ion irradiation on Ag diffusion in SiC

Transport of Ag fission product through the silicon-carbide (SiC) diffusion barrier layer in TRISO fuel particles is of considerable interest given the application of this fuel type in high temperature gas-cooled reactor (HTGR) and other future reactor concepts. The reactor experiments indicate that...

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Veröffentlicht in:Journal of nuclear materials 2016-04, Vol.471 (C), p.220-232
Hauptverfasser: Leng, Bin, Ko, Hyunseok, Gerczak, Tyler J., Deng, Jie, Giordani, Andrew J., Hunter, Jerry L., Morgan, Dane, Szlufarska, Izabela, Sridharan, Kumar
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Sprache:eng
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Zusammenfassung:Transport of Ag fission product through the silicon-carbide (SiC) diffusion barrier layer in TRISO fuel particles is of considerable interest given the application of this fuel type in high temperature gas-cooled reactor (HTGR) and other future reactor concepts. The reactor experiments indicate that radiation may play an important role in release of Ag; however so far the isolated effect of radiation on Ag diffusion has not been investigated in controlled laboratory experiments. In this study, we investigate the diffusion couples of Ag and polycrystalline 3C–SiC, as well as Ag and single crystalline 4H–SiC samples before and after irradiation with C2+ ions. The diffusion couple samples were exposed to temperatures of 1500 °C, 1535 °C, and 1569 °C, and the ensuing diffusion profiles were analyzed by secondary ion mass spectrometry (SIMS). Diffusion coefficients calculated from these measurements indicate that Ag diffusion was greatly enhanced by carbon irradiation due to a combined effect of radiation damage on diffusion and the presence of grain boundaries in polycrystalline SiC samples. •The effect of radiation damage in SiC on the thermal diffusion of Ag is investigated.•Enhanced Ag diffusion is observed in the irradiated polycrystalline 3C–SiC.•No Ag diffusion is observed in irradiated/unirradiated single crystal 4H–SiC.•Possible mechanisms for radiation-enhanced Ag diffusion are discussed.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2015.11.017