Published November 2010 | Version v1
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Xenon thermal behavior in sintered titanium nitride, foreseen inert matrix for GFR

Description

This work concerns the generation IV future nuclear reactors such as gas-cooled fast reactor (GFR) for which refractory materials as titanium nitride (TiN) are needed to surround fuel and act as a fission product diffusion barrier. This study is about Xe thermal behavior in sintered titanium nitride. Microstructure effects on Xe behavior have been studied. In this purpose, several syntheses have been performed using different sintering temperatures and initial powder compositions. Xenon species have been introduced into samples by ionic implantation. Then, samples were annealed in temperature range from 1300 C to 1600 C, these temperatures being the accidental awaited temperature. A transport of xenon towards sample surface has been observed. Transport rate seems to be slow down when increasing sintering temperature. The composition of initial powder and the crystallographic orientation of each considered grain also influence xenon thermal behavior. Xenon release has been correlated with material oxidation during annealing. Xenon bubbles were observed. Their size is proportional with xenon concentration and increases with annealing temperature. Several mechanisms which could explain Xe intragranular mobility in TiN are proposed. In addition with experiments, very low Xe solubility in TiN has been confirmed by ab initio calculations. So, bi-vacancies were found to be the most favoured Xe incorporation sites in this material. (author)

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Additional details

Additional titles

Original title (French)
Comportement thermique du xenon dans le nitrure de titane fritte, matrice inerte d'interet des RNR-G

Publishing Information

Imprint Pagination
200 p.
Report number
FRNC-TH--8043

Optional Information

Notes
[100 refs.]; Also available from Universite Claude Bernard. SCD-Lyon1, Domaine de la Doua - 20 avenue Gaston Berger, 69622 - Villeurbanne Cedex (France)