The effect of vibrational disturbances on heat and hydrodynamic processes in a melt during the crystal growing by the Bridgman method

Authors

  • O.P. Fedorov
  • V. F. Demchenko
  • I.V. Shuba
  • E. L. Zhyvolub

DOI:

https://doi.org/10.15407/dopovidi2015.03.075

Keywords:

Bridgman method, crystal, melt, vibrational disturbances

Abstract

The effect of vibrational disturbances on the heat and mass transfer during the directional solidification using the Bridgman technique has been studied. The mathematical simulation and direct observations of the solid–melt interface have been used.

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References

Fleminhs M. Solidification process, Moscow: Mir, 1977 (in Russian).

Fedyushkin A., Bourago N., Polezhatv V., Zharikov E. J. Cryst. Growth., 2005, 275, No 1–2: e1557–e1563. https://doi.org/10.1016/j.jcrysgro.2004.11.220

Fedoseyev A. I., Alexander J. I. D. J. Cryst. Growth., 2000, 211, No 1–2: 34–42. https://doi.org/10.1016/S0022-0248(99)00839-8

Milvidskii M. H., Kartavykh A. V., Rakov V. V. Poverkhnost. Renthen., sinkhrotr. i neitron. issledovaniia, 2001, 9: 17–35 (in Russian).

Zharikov E. V., Avetisov I. H., Skorenko A. V. et al. Poverkhnost. Renthen., sinkhrotr. i neitron. issledovaniia, 2001, 9: 56–62 (in Russian).

Yu W. C., Chen Z. B., Hsu W. T. et al. J. Cryst. Growth., 2004, 271, No 3–4: 474–480. https://doi.org/10.1016/j.jcrysgro.2004.07.080

Fedorov O. P. Processes of crystal growth: kinetics, shaping, heterogeneity, Kiev: Nauk. Dumka, 2010 (in Russian).

Chopra M. A, Glicksman M. E., Singh N. B. Met. Trans. A., 1988, 19 A, No 12: 3087–3096.

Trivedi R., Somboonsuk K. Acta Met., 1985, 33, No 6: 1061–1068. https://doi.org/10.1016/0001-6160(85)90199-3

Published

21.01.2025

How to Cite

Fedorov, O., Demchenko, V. F., Shuba, I., & Zhyvolub, E. L. (2025). The effect of vibrational disturbances on heat and hydrodynamic processes in a melt during the crystal growing by the Bridgman method . Reports of the National Academy of Sciences of Ukraine, (3), 75–80. https://doi.org/10.15407/dopovidi2015.03.075