Nano-Structured Materials under Irradiation: Oxide Dispersion-Strengthened Steels

被引:6
|
作者
Ribis, Joel [1 ]
Mouton, Isabelle [1 ]
Baumier, Cedric [2 ]
Gentils, Aurelie [2 ]
Loyer-Prost, Marie [3 ]
Luneville, Laurence [1 ]
Simeone, David [1 ]
机构
[1] Univ Paris Saclay, Serv Rech Met Appl, CEA, F-91191 Gif Sur Yvette, France
[2] Univ Paris Saclay, IJCLab, CNRS, IN2P3, F-91405 Orsay, France
[3] Univ Paris Saclay, Serv Rech Met Phys, CEA, F-91191 Gif Sur Yvette, France
关键词
nuclear material; nano-oxides; ion irradiation; Ostwald ripening; stability; transmission electron microscopy; ION-IRRADIATION; ODS STEELS; STABILITY; NANOCLUSTERS; EVOLUTION; KINETICS; PRECIPITATION; INTERFACES; PARTICLES; NEUTRON;
D O I
10.3390/nano11102590
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Oxide dispersion-strengthened materials are reinforced by a (Y, Ti, O) nano-oxide dispersion and thus can be considered as nanostructured materials. In this alloy, most of the nanoprecipitates are (Y, Ti, O) nano-oxides exhibiting a Y2Ti2O7 pyrochlore-like structure. However, the lattice structure of the smallest oxides is difficult to determine, but it is likely to be close to the atomic structure of the host matrix. Designed to serve in extreme environments-i.e., a nuclear power plant-the challenge for ODS steels is to preserve the nano-oxide dispersion under irradiation in order to maintain the excellent creep properties of the alloy in the reactor. Under irradiation, the nano-oxides exhibit different behaviour as a function of the temperature. At low temperature, the nano-oxides tend to dissolve owing to the frequent ballistic ejection of the solute atoms. At medium temperature, the thermal diffusion balances the ballistic dissolution, and the nano-oxides display an apparent stability. At high temperature, the nano-oxides start to coarsen, resulting in an increase in their size and a decrease in their number density. If the small nano-oxides coarsen through a radiation-enhanced Ostwald ripening mechanism, some large oxides disappear to the benefit of the small ones through a radiation-induced inverse Ostwald ripening. In conclusion, it is suggested that, under irradiation, the nano-oxide dispersion prevails over dislocations, grain boundaries and free surfaces to remove the point defects created by irradiation.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] Nanostructure Evolution of Oxide Dispersion Strengthened Steels under Fe Ion Irradiation at 350°C
    S. V. Rogozhkin
    A. A. Khomich
    A. A. Bogachev
    A. A. Nikitin
    V. V. Khoroshilov
    T. V. Kulevoy
    P. A. Fedin
    K. E. Pryanishnikov
    A. A. Lukyanchuk
    O. A. Raznitsyn
    A. S. Shutov
    A. G. Zaluzhnyi
    A. L. Vasiliev
    M. Yu. Presniakov
    [J]. Physics of Atomic Nuclei, 2020, 83 : 1519 - 1528
  • [42] Comparison of the neutron and ion irradiation response of nano-oxides in oxide dispersion strengthened materials
    Ribis, Joel
    Bordas, Eric
    Trocellier, Patrick
    Serruys, Yves
    de Carlan, Yann
    [J]. JOURNAL OF MATERIALS RESEARCH, 2015, 30 (14) : 2210 - 2221
  • [43] Atom-Probe Tomography Study of the Influence of Fe Ion Irradiation at 500°C on the Nanostructure of Oxide Dispersion-Strengthened Steels
    S. V. Rogozhkin
    A. V. Klauz
    A. A. Bogachev
    A. A. Khomich
    P. A. Fedin
    O. A. Raznitsyn
    [J]. Physics of Atomic Nuclei, 2023, 86 : 1975 - 1984
  • [44] Atom-Probe Tomography Study of the Influence of Fe Ion Irradiation at 500°C on the Nanostructure of Oxide Dispersion-Strengthened Steels
    Rogozhkin, S. V.
    Klauz, A. V.
    Bogachev, A. A.
    Khomich, A. A.
    Fedin, P. A.
    Raznitsyn, O. A.
    [J]. PHYSICS OF ATOMIC NUCLEI, 2023, 86 (09) : 1975 - 1984
  • [45] Comparison of the neutron and ion irradiation response of nano-oxides in oxide dispersion strengthened materials
    Joël Ribis
    Eric Bordas
    Patrick Trocellier
    Yves Serruys
    Yann de Carlan
    Alexandre Legris
    [J]. Journal of Materials Research, 2015, 30 : 2210 - 2221
  • [46] Biofabrication of nano-structured materials
    Payne, Gregory
    [J]. Industrial Bioprocessing, 2004, 26 (09):
  • [47] The research of nano-scale particles in the oxide dispersion strengthened steels
    [J]. Wan, Fa-Rong, 1600, Journal of Functional Materials (45):
  • [48] Characterization of the Defects in Oxide Dispersion-Strengthened Iron Alloy after Helium Ion Irradiation
    Gao, P. L.
    Ju, X.
    Xin, Y.
    Cao, Q. S.
    Guo, Z. M.
    Gao, P. L.
    Guo, L. P.
    Xin, Y.
    Wang, B. Y.
    [J]. 2015 IEEE 26TH SYMPOSIUM ON FUSION ENGINEERING (SOFE), 2015,
  • [49] Structure and creep of stainless steels dispersion-strengthened with yttrium oxides
    Shalaev, VI
    Sagaradze, VV
    Kochetkova, TN
    Vil'danova, NF
    Tian, Y
    Sun, JG
    Chung, V
    [J]. PHYSICS OF METALS AND METALLOGRAPHY, 2001, 91 (03): : 314 - 320
  • [50] Development of a Novel Melt Spinning-Based Processing Route for Oxide Dispersion-Strengthened Steels
    Hong, Zuliang
    Morrison, Alasdair P. C.
    Zhang, Hongtao
    Roberts, Steve G.
    Grant, Patrick S.
    [J]. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2018, 49A (02): : 604 - 612