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Atomic Energy

, Volume 81, Issue 5, pp 764–769 | Cite as

Hafnium and dysprosium titanate based control rods for thermal water-cooled reactors

  • V. D. Risovanyi
  • E. P. Klochkov
  • E. E. Varlashova
Articles

Keywords

Titanate Hafnium Dysprosium Dysprosium Titanate 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References

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    F. Queyroux,“Sur la formation de composes nouveaux dans les systemes oxyde de titane-oxydes de torres rares,”C. R. Acad. Sci. Paris,259, Group 8, 1527–1529 (1964).Google Scholar
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    V. D. Risovanyi, E. P. Klochkov, and V. B. Ponomarenko, Hafnium in Nuclear Technology, NIIAR (1993).Google Scholar
  3. 3.
    E. P. Klochkov, V. D. Risovanyi, and Z. I. Chechetkina, Review of the Applications of Hafnium in the Control Rods of Nuclear Reactors [in Russian], TsNIIatominform, Moscow (1985).Google Scholar
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    E. P. Klochkov and V. D. Risovanyi,“Hafnium in nuclear technology,”Atomnaya Tekhnika za Rubezhom, No. 10, 12–16 (1987).Google Scholar
  5. 5.
    V. D. Risovanyi et al.,“Structural damage to metallic hafnium under irradiation in a reactor,”in: Proceedings of an International Conference on Reactor Materials Engineering [in Russian], (Alushta, May 22–25, 1990), Khar'kov (1991), Vol. 8, pp. 118–124.Google Scholar
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    W. Keller, J. Shellenberg, D. Hollen, et al.,“Development of hafnium and comparison with other pressurized water reactor control rod materials,”Nucl. Technol.,59, No. 3, 476–482 (1982).Google Scholar

Copyright information

© Plenum Publishing Corporation 1997

Authors and Affiliations

  • V. D. Risovanyi
  • E. P. Klochkov
  • E. E. Varlashova

There are no affiliations available

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