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Effect of TiN coating on suppressing Ce-Fe interaction under irradiation

  • Jian Gan
  • , Chao Jiang
  • , Yizhi Zhang
  • , Yifan Zhang
  • , Jiawei Song
  • , Ke Xu
  • , Benson Kunhung Tsai
  • , Xuanyu Sheng
  • , Haiyan Wang
  • , Yinbin Miao
  • , Peter Mouche
  • , Kun Mo
  • , Bei Ye

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Advanced cladding is critical for fast reactors with the adequate thermal conductivity, mechanical stability and radiation tolerance of the cladding base material, corrosion resistance and high temperature coolant compatibility of the cladding surface, and chemical stability of the cladding inner wall against fuel cladding chemical interaction (FCCI). The preliminary results of recent ion irradiation studies of two diffusion-couple samples of cerium (Ce)/oxide-dispersion strengthened steel (ODS) and Ce/TiN/ODS, irradiated with 80 MeV xenon (Xe) ions to 100 displacements per atom (dpa) at 500°C, are summarized. Significant Ce-Fe interaction occurred in the Ce/ODS sample, and no noticeable Ce-Fe interaction was found in the Ce/TiN/ODS sample. It shows the effectiveness of 1-µm TiN diffusion barrier coated by the pulsed laser deposition on suppressing Ce-Fe interaction, a major contributor to FCCI in cladding. Density function theory (DFT) calculations of the impurity diffusivities of Ce and Fe within the Ti sublattice of TiN were performed to assist a mechanistic understanding of the experimental results.

Original languageEnglish
Article number102221
JournalMaterialia
Volume38
Early online dateSep 5 2024
DOIs
StatePublished - Dec 2024

Keywords

  • Ceramic coating
  • cladding
  • DFT calculation
  • Diffusion couple
  • Fuel cladding chemical interaction
  • Ion irradiation

INL Publication Number

  • INL/JOU-24-78546
  • 177576

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