English

Surface and in-depth structural changes in nuclear graphite irradiated with noble gases described with Raman imaging

Materials Science 2023-04-21 v1

Abstract

4th Generation high-temperature gas-cooled nuclear reactors (HTGR) are regarded as possible sources of industrial heat in Poland and Europe, allowing for a substantial reduction of the dependency on gas and coal import. It is mainly due to their safety of use, reliability and economy in a current energetic crisis. In this work, graphite, as a primary construction material and neutron moderator in HTGR, was evaluated before and after ion irradiation since its properties depend on the material's structure and purity. Commercial graphite materials (IG-110, NBG-17) and the laboratory's in-home material were chosen for the exemplary samples. The structural damage in HTGR was simulated with energetic Ar+ and He+ ions with fluencies from 1E12 to 2E17 ion/cm2. Raman imaging was chosen to assess radiation damage build-up: the crystallites' evolution, occurrence and types of defects. The recorded evolution showed stronger disordering of the material with heavier Ar+ ions than with He+.

Keywords

Cite

@article{arxiv.2304.10120,
  title  = {Surface and in-depth structural changes in nuclear graphite irradiated with noble gases described with Raman imaging},
  author = {Magdalena Gawęda and Magdalena Wilczopolska and Kinga Suchorab and Małgorzata Frelek-Kozak and Łukasz Kurpaska and Jacek Jagielski},
  journal= {arXiv preprint arXiv:2304.10120},
  year   = {2023}
}