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Thermally activated glide of edge superdislocations in a single-crystalline Ni3Ge alloy with point defects

  • Condensed-State Physics
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Abstract

Temperature dependence of the yield stress for Ni 3 Ge single crystals is investigated. Positive temperature dependence of the critical yield stress in the high-temperature region (above 420 K) is attributed to a thermally activated accumulation of a high nonscrew-superdislocation density. The mechanism of interaction of point defects with superdislocations and its contribution to the temperature anomaly is examined. Correlation is found between the calculated contribution from point defects and the observed increase in the critical yield stress with the test temperature.

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References

  1. H. R. Pak, T. Saburi, and S. Henno, Trans. JIM, 18, No. 9, 617–626 (1977).

    Google Scholar 

  2. V. A. Starenchenko, Yu. A. Abzaev, N. A. Koneva, and È. V. Kozlov, Fiz. Met. Metalloved., 68, No. 3, 595–601 (1989).

    Google Scholar 

  3. V. A. Starenchenko and Yu. A. Abzaev, Metallofizika, No. 2, 131–136 (1991).

  4. V. A. Starenchenko, Yu. A. Abzaev, Yu. V. Solov’eva, and È. V. Kozlov, Fiz. Metal. Metalloved., 79, No. 1, 147–155 (1995).

    Google Scholar 

  5. V. A. Starenchenko, Yu. V. Solov’eva, Yu. A. Abzaev, and B. I. Smirnov, Fiz. Tverd. Tela, No. 38, 1668–1671 (1996).

  6. Yu. A. Abzaev, V. A. Starenchenko, and È. V. Kozlov, Prikl. Mat. Teor. Fiz., 46, No. 1, 116–125 (2005).

    Google Scholar 

  7. N. A. Koneva and È. V. Kozlov, Sov. Phys. J., No. 8, 681–691 (1982).

  8. P. H. Thornton, R. G. Davies, and T. L. Johnston, Met. Trans, 1, 207–218 (1970).

    Google Scholar 

  9. P. Veyssiere and G. Saada, in: Dislocations in Solids, T. Nabarro, ed., vol. 10 (1996), pp. 1–142.

  10. S. Takeuchi and E. Kuramoto, Acta Metall., 21, No. 4, 415–425 (1973).

    Article  Google Scholar 

  11. V. Paidar, D. P. Pope, and V. A. Vitek, Acta Metall., 32, No. 3, 435–438 (1984).

    Article  Google Scholar 

  12. P. H. Hirsh, Phil. Mag. A., 55, No. 3, 569–612 (1992).

    Article  Google Scholar 

  13. T. Suzuki, Y. Mishima, and S. Miura, JSU International, 29, No. 1, 1–23 (1989).

    Google Scholar 

  14. M. Yamaguchi, V. Vitek, and D. P. Pope, Phil. Mag. A, 43, No. 4, 1027–1044 (1981).

    Article  Google Scholar 

  15. M. Yanaguchi, V. Paidar, D. P. Pope, and V. Vitek, Phil. Mag. A, 45, No. 5, 867–882 (1982).

    Article  Google Scholar 

  16. È. V. Kozlov and L. E. Popov, Izv. Vyssh. Uchebn. Zaved. Fiz., No. 10, 102–111 (1967).

  17. T. Suzuki, H. Yoshinaga, and S. Takeuchi, Dislocation Dynamics and Plasticity [Russian translation], Mir, Moscow (1989).

    Google Scholar 

  18. V. A. Starenchenko, S. V. Starenchenko, S. N. Kolupaeva, and O. D. Pantyukhova, Russ. Phys. J., No. 1, 61–65 (2000).

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Correspondence to Yu. A. Abzaev.

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Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Fizika, No. 4, pp. 83–88, April, 2007.

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Abzaev, Y.A., Starenchenko, V.A. & Kozlov, È.V. Thermally activated glide of edge superdislocations in a single-crystalline Ni3Ge alloy with point defects. Russ Phys J 50, 394–399 (2007). https://doi.org/10.1007/s11182-007-0055-y

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  • DOI: https://doi.org/10.1007/s11182-007-0055-y

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