Buckle, ruck and tuck: A proposed new model for the response of graphite to neutron irradiation

The default theory of radiation damage in graphite invokes Frenkel pair formation as the principal cause of physical property changes. We set out its inadequacies and present two new mechanisms that contribute to a better account for changes in dimension and stored energy. Damage depends on the subs...

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Veröffentlicht in:Journal of nuclear materials 2011-06, Vol.413 (3), p.150-155
Hauptverfasser: Heggie, M.I., Suarez-Martinez, I., Davidson, C., Haffenden, G.
Format: Artikel
Sprache:eng
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Zusammenfassung:The default theory of radiation damage in graphite invokes Frenkel pair formation as the principal cause of physical property changes. We set out its inadequacies and present two new mechanisms that contribute to a better account for changes in dimension and stored energy. Damage depends on the substrate temperature, undergoing a change at approximately 250 °C. Below this temperature particle radiation imparts a permanent, nano-buckling to the layers. Above it, layers fold, forming what we describe as a ruck and tuck defect. We present first principles and molecular mechanics calculations of energies and structures to support these claims. Necessarily we extend the dislocation theory of layered materials. We cite good experimental evidence for these features from the literature on radiation damage in graphite.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2011.04.015