Skip to main content
Log in

Combustion of layered SHS systems: Thermal conditions at the interface

  • Published:
International Journal of Self-Propagating High-Temperature Synthesis Aims and scope Submit manuscript

Abstract

Combustion of two-layer SHS systems was numerically modeled in order to shed new light on the stability of a combustion wave passing through the interface between two reactive heterogeneous systems. Thermal conditions at the interface have been numerically calculated for all stages of a transient process taking place at the interface, with special emphasis on the influence of a gaseous gap between the constituent green pellets.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Strunina, A.G., Firsov, A.N., and Kostin, S.V., Transition modes in the combustion of heterogeneous systems with solid-phase products, Combust. Explos. Shock Waves, 1981, vol. 17, no. 5, pp. 500–505.

    Article  Google Scholar 

  2. Kostin, S.V., Strunina, A.G., and Barzykin, V.V., Influence of thermophysical parameters on the stability of a combustion wave on passing through an interface between gasless systems, Combust. Explos. Shock Waves, 1987, vol. 23, no. 6, pp. 715–720.

    Article  Google Scholar 

  3. Strunina, A.G., Ermakov, V.I., and Averson, E.A., Limiting conditions of ignition of gasless systems by a combustion, Combust. Explos. Shock Waves, 1979, vol. 15, no. 4, pp. 484–489.

    Article  Google Scholar 

  4. Strunina, A.G., Ermakov, V.I., and Barzykin, V.V., Influence of heat losses and thermophysical parameters on the ignition process of gasless systems of wave combustion, Combust. Explos. Shock Waves, 1978, vol. 14, no. 4, pp. 441–447.

    Article  Google Scholar 

  5. Vadchenko, S.G., Boyarchenko, O.D., Sytschev, A.E., and Sachkova, N.V., SHS joining in the Ti–Si–C system: Structure of transition layer, Int. J. Self-Propag. High-Temp. Synth., 2013, vol. 22, no. 1, pp. 46–51.

    Article  Google Scholar 

  6. Maksimov, Yu.M., Kirdyashkin, A.I., Ziatdinov, M.Kh., and Kitler, V.D., Interphase convection in the contact interaction of metals under non-isothermal conditions, Combust. Explos. Shock Waves, 2000, vol. 36, no. 4, pp. 462–469.

    Article  Google Scholar 

  7. Kirdyashkin, A.I., Kitler, V.D., Salamatov, V.G., Yusupov, R.A., and Maksimov, Yu.M., Capillary hydrodynamic phenomena in gas-free combustion, Combust. Explos. Shock Waves, 2007, vol. 43, no. 6, pp. 645–653.

    Article  Google Scholar 

  8. Averson, E.A. and Rosenband, V.I., Approximate methods for calculating critical ignition conditions, Combust. Explos. Shock Waves, 1968, vol. 4, no. 4, pp. 299–303.

    Article  Google Scholar 

  9. Carslaw, H.S. and Jaeger, J.C., Conduction of Heat in Solids, Oxford (UK): Oxford University Press, 1986, pp. 164–165.

    Google Scholar 

  10. Krishenik, P.M., Merzhanov, A.G., and Shkadinskii, K.G., Frontal transformation modes of structured energetic heterogeneous systems, Combust. Explos. Shock Waves, 2005, vol. 41, no. 2, pp. 164–173.

    Article  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to O. D. Boyarchenko.

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Boyarchenko, O.D., Kostin, S.V., Krishenik, P.M. et al. Combustion of layered SHS systems: Thermal conditions at the interface. Int. J Self-Propag. High-Temp. Synth. 24, 115–118 (2015). https://doi.org/10.3103/S1061386215030048

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.3103/S1061386215030048

Keywords

Navigation