Superficial work-hardening of details from high-carbon materials in the conditions of self-propagating high temperature synthesis

Authors

  • Сергій Миколайович Ткаченко Zaporozhye State Engineering Academy Lenin Av.,22, Ukraine

DOI:

https://doi.org/10.15587/1729-4061.2013.12411

Keywords:

Self-propagating high temperature synthesis diffusion, superficial work-hardening, microstructure, superficial layer, microhardness

Abstract

The results of development of technology of the superficial work-hardening of details in the conditions of self-propagating high temperature synthesis, used for the details of space-rocket technique are rationed in this work. The pictures of the work-hardened materials, results of phase analysis and measuring of microhardness are resulted. The main probed properties of high-carbon materials are the followings: heat-tolerance, adhesion strength, inoxidizability in corrosive environments and wearproofness. It was proved and scientifically grounded that application of self-propagating high temperature synthesis for technology of the superficial work-hardening of high-carbon materials gives the maximal result of physical-mechanical and technological properties of surface of the work-hardened details, and also basic technical-economic indices are improved

Author Biography

Сергій Миколайович Ткаченко, Zaporozhye State Engineering Academy Lenin Av.,22

Junior scientist

Department of tooling of metals

References

  1. Космос и технологии [Текст] / Ф. Санин [и др.]. Д: АРТ-ПРЕСС, 2007. – 456с.
  2. Удовицкий, В. И. Антифрикционное пористое силицирование углеродистых сталей [Текст] / В. И. Удовицкий // М.: “Машиностроение”, 1977. – 191с.
  3. Ворошнин, Л.Г. Антифрикционные диффузионные покрытия [Текст] / Л. Г.Ворошнин // Минск: Наука и техника, 1981. – 295 с.
  4. Мержанов, А. Г. Процессы горения и синтеза материалов [Текст] / А.Г.Мержанов // Черноголовка: ИСМАН, 1998. – 512 с.
  5. International Journal of Self-Propagating High-Temperature Synthesis, Alletron Press, Inc. 150, Fifth Avenue, New York, 10011, USA.
  6. Scherbakov, V. A. SHS Welding of Reractory Materials. [Текст] / V. A. Scherbakov, A. S. Shteinberg // International Journal of Self-Propagation High-Temperature Synthesis. 1993. - Vol.2. - N4. - P.357-369.
  7. Merzhanov, A. G., в кн.: Combustion and plasma synthesis of high-temperature materials [Текст] / A. G. Merzhanov // ed. by Z. Munir, J. Holt, N.Y.. – 1990. - P. 1-53.
  8. Krishenik, P. M. Modeling of Combustion Wavе Propagation in a Carbon Dust [Текст] / P. M. Krishenik, E. N. Rumanov, K. G. Shkadinskii // Gas Mixture. Combustion and Flame. - 1994. - V.99. - P.713-722.
  9. . Krishenik, P. M. Stability of Thermal Front with Heat Conductivity Dependent on Temperature [Текст] / P. M. Krishenik, K. G. Shkadinskii // Inernational Journal of Self-Propagating High-Temperature Synthesis. - 2004. V.13. - №4. - P.253-261.
  10. Krishenik, P. M. [Текст] / P. M. Krishenik, A. I. Mamedov, S. I. Khudayev, G. V. Shkadinskaja, G. B. Manelis //Mathematical Modeling of Nonadiabatic Combustion in a Stream. 1993. Nato Advanced Study Institute. Unsteady Combustion. - 1993. - P.17.1-17.7.
  11. Sanin F., Dgur E., Sanan A., Hutorniy. (2007). Textbook: Space and technologies. ART-PRESS, 456.
  12. Udovickiy, V. (1977). Textbook: Anti-friction porous cover of carbon steels. М.: “Engineering”, 191.
  13. Voroshnin, L. (1981). Textbook: Anti-friction diffusion covers. Л.Г.Ворошнин. Minsk: Антифрикционные диффузионные покрытия. Минск: Scitech, 295.
  14. Merzanov, A. (1998). Article: Processes of burning and synthesis of materials. Institute of structural macrokinetics of academy of sciences, 512.
  15. International Journal of Self-Propagating High-Temperature Synthesis, Alletron Press, Inc. 150, Fifth Avenue, New York, 10011, USA.
  16. Scherbakov, V. A., Shteinberg, A. S. (1993). SHS Welding of Reractory Materials. International Journal of Self-Propagation High-Temperature Synthesis, 2, N4, 357-369.
  17. Merzhanov, A. G. (1990). Combustion and plasma synthesis of high-temperature materials, ed. by Z. Munir, J. Holt, N.Y., 1-53.
  18. Krishenik, P. M., Rumanov E. N., Shkadinskii, K. G. (1994). Modeling of Combustion Wavе Propagation in a Carbon Dust/Gas Mixture// Combustion and Flame, 99, 713-722.
  19. Krishenik, P. M., Shkadinskii, K. G. (2004). Stability of Thermal Front with Heat Conductivity Dependent on Temperature// Inernational Journal of Self-Propagating High-Temperature Synthesis, 13, №4, 253-261.
  20. Krishenik, P. M., Mamedov, A. I., Khudayev, S. I., Shkadinskaja, G. V., Manelis, G. B. (1993). Mathematical Modeling of Nonadiabatic Combustion in a Stream. Nato Advanced Study Institute. Unsteady Combustion, 17.1-17.7.

Published

2013-04-25

How to Cite

Ткаченко, С. М. (2013). Superficial work-hardening of details from high-carbon materials in the conditions of self-propagating high temperature synthesis. Eastern-European Journal of Enterprise Technologies, 2(5(62), 30–34. https://doi.org/10.15587/1729-4061.2013.12411