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The effect of strain rate and temperature on the mechanical properties of Zr-1%Nb alloy

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References

  1. Yu. E. Bagdasarov, G. P. Bogoslovskaya, A. V. Zhukov, et al., "Emergency cooling of the fuel elements of fast reactors in the case of boiling under natural convection conditions," At. Énerg.,77, No. 4, 262–267 (1994).

    Google Scholar 

  2. A. N. Birbraer and S. G. Shul'man, The Strength and Reliability of Nuclear Power Plant Constructions under Extreme Dynamic Conditions [in Russian], Énergoatomizdat, Moscow (1989).

    Google Scholar 

  3. G. V. Stepanov, Elastoplastic Strain of Materials under Impulse Loads [in Russian], Naukova Dumka, Kiev (1979).

    Google Scholar 

  4. M. M. Astakhov, A. V. Loginov, L. P. Loshmanov, et al., "The choice of sample for determining the strength characteristics for different stretching rates," Zavod. Lab., No. 5, 73–76 (1988).

  5. M. M. Astakhov, A. V. Loginov, L. P. Loshmanov, et al., "An experimental—theoretical method of determining the strength characteristics of materials under quasistatic testing conditions," Problemy Prochnosti, No. 9, 26–28 (1991).

  6. M. M. Astakhov, A. N. Golenchenko, L. P. Loshmanov, et al., "Electromagnetic apparatus for testing structural materials for stretching at strain rates of 0.5–2 m/sec," in: Deformation and Fracture of the Structural Materials and Components of Nuclear Power Plants [in Russian], Énergoatomizdat, Moscow, (1986), pp. 59–63.

  7. M. M. Astakhov, A. V. Loginov, L. P. Loshmanov, et al., "Magnetic impulse equipment for high-rate testing of materials," Zavod. Lab., No. 2, 98–100 (1990).

  8. S. M. Kokoshvili, Dynamic Testing of Rigid Polymer Materials [in Russian], Zinatne, Riga (1978).

  9. J. Chiddister and L. Malvern, "Compression-impact testing of aluminum at elevated temperature," Exp. Mechanics, No. 3, 81–90 (1963).

  10. M. Kassner and R. Breithaupt, "The yield stress of type 21-6-9 stainless steel over a wide range of strain rate (10−5-10−4 sec−1) and temperature," in: Proc. 3rd Conference Mech. Prop. High Rates of Strain, Oxford (1984).

    Google Scholar 

  11. A. V. Loginov, A. E. Trotsenko, L. P. Loshmanov, et al., "Dynamic deformation aging of steels over a wide range of strain rates," Fiz. Met. Metalloved.,68, No. 4, 635–639 (1989).

    Google Scholar 

  12. G. Boyd, J. Harding, P. Bleasdale, et al., "The effect of temperature and strain rate on the tensile strength of a fastgas-cooled uranium — 2 wt.% molybdenum alloy," J. Nucl. Mat.,132, 181–191 (1985).

    Article  Google Scholar 

  13. A. Hammad, S. El-Mashri, and M. Nasr, "Mechanical properties of the Zr-1% Nb alloy at elevated temperatures," Ibid.,,186, 166–176 (1992).

    Article  Google Scholar 

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Moscow Engineering Physics Institute. State Scientific Center of the Russian Federation — A. A. Bochvar All-Union Scientific-Research Institute of Standardization in Machine Engineering. Translated from Atomnaya Énergiya, Vol. 81, No. 2, pp. 145–148, August, 1996.

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Loshmanov, L.P., Rudnev, V.D., Nechaeva, O.A. et al. The effect of strain rate and temperature on the mechanical properties of Zr-1%Nb alloy. At Energy 81, 601–604 (1996). https://doi.org/10.1007/BF02415664

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