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HRTEM study of oxide nanoparticles in K3-ODS ferritic steel developed for radiation tolerance

  • L. Hsiung
  • , M. Fluss
  • , S. Tumey
  • , J. Kuntz
  • , B. El-Dasher
  • , M. Wall
  • , B. Choi
  • , A. Kimura
  • , F. Willaime
  • , Y. Serruys
  • Lawrence Livermore National Laboratory
  • Kyoto University
  • CEA Saclay

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Crystal and interfacial structures of oxide nanoparticles and radiation damage in 16Cr-4.5Al-0.3Ti-2W-0.37 Y2O3 ODS ferritic steel have been examined using high-resolution transmission electron microscopy (HRTEM) techniques. Oxide nanoparticles with a complex-oxide core and an amorphous shell were frequently observed. The crystal structure of complex-oxide core is identified to be mainly monoclinic Y4Al2O 9 (YAM) oxide compound. Orientation relationships between the oxide and the matrix are found to be dependent on the particle size. Large particles (>20 nm) tend to be incoherent and have a spherical shape, whereas small particles (<10 nm) tend to be coherent or semi-coherent and have a faceted interface. The observations of partially amorphous nanoparticles and multiple crystalline domains formed within a nanoparticle lead us to propose a three-stage mechanism to rationalize the formation of oxide nanoparticles containing core/shell structures in as-fabricated ODS steels. Effects of nanoparticle size and density on cavity formation induced by (Fe8+ + He+) dual-beam irradiation are briefly addressed.

langue originaleAnglais
Pages (de - à)72-79
Nombre de pages8
journalJournal of Nuclear Materials
Volume409
Numéro de publication2
Les DOIs
étatPublié - 15 févr. 2011
Modification externeOui

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