Skip to main content
Log in

Computer-Assisted Prediction and Qualitative Analysis for Polymer Parachute Cords

  • Published:
Fibre Chemistry Aims and scope

Mathematical modeling and systematic analysis of viscoelastic processes in polymers are the basis for methods we have developed for computer-assisted prediction and qualitative analysis of polymer parachute cords. Solving the problem of qualitative analysis of deformation properties for parachute cords will let us improve the performance characteristics of domestic parachute systems and to improve their safety and functionality.

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. A. G. Makarov, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 2, 12-16 (2000).

  2. A. M. Stalevich and A. G. Makarov, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 3, 8-13 (2000).

  3. A. G. Makarov and A. M. Stalevich, Khim. Volokna, No. 4, 67-69 (2001).

  4. A. G. Makarov and A. M. Stalevich, Khim. Volokna, No. 5, 58-61 (2001).

  5. A. M. Stalevich and A. G. Makarov, Khim. Volokna, No. 6, 68-70 (2001).

  6. A. G. Makarov and A. M. Stalevich, Khim. Volokna, No. 3, 52-55 (2002).

  7. A. M. Stalevich, A. G. Makarov, and E. D. Saidov, Khim. Volokna, No. 3, 55-57 (2002).

  8. A. G. Makarov and A. M. Stalevich, Khim. Volokna, No. 6, 62-64 (2002).

  9. A. G. Makarov, Izv. Vuzov Tekhnol. Tekst. Prom-sti, , No. 2, 13-17 (2002).

  10. A. G. Makarov and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 3, 10-13 (2002).

  11. A. M. Stalevich, A. G. Makarov, and E. D. Saidov, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 4-5, 15-18 (2002).

  12. A. M. Stalevich, A. G. Makarov, and E. D. Saidov, Izv. Vuzov Tekhnol. Tekst. Prom-sti, , No. 1, 16-22 (2003).

  13. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 3, 13-17 (2006).

  14. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 4, 9-13 (2006).

  15. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 3, 58-61 (2006).

  16. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 5, 38-43 (2006).

  17. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 6, 47-51 (2006).

  18. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 5, 18-22 (2006).

  19. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 6, 14-19 (2006).

  20. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 2, 14-18 (2007).

  21. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 3, 20-24 (2007).

  22. A. G. Makarov, A. V. Demidov et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 1, 15-19 (2007).

  23. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 1, 62-65 (2007).

  24. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 6, 49-52 (2007).

  25. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Khim. Volokna, No. 6, 52-55 (2007).

  26. A. V. Demidov, A. G. Makarov, and A. M. Stalevich, Prikl. Mekhanika i Tekhnich. Fizika, 48, No. 5, 147-157 (2007).

    Google Scholar 

  27. A. G. Makarov, A. V. Demidov, and A. M. Stalevich, Mekhanika Tv. Tela, No. 1, 155-165 (2009).

  28. A. G. Makarov, G. Ya. Slutsker et al., Khim. Volokna, No. 5, 28-32 (2012).

  29. V. V. Golovina, P. P. Rymkevich et al., Khim. Volokna, No. 6, 33-40 (2013).

  30. A. G. Makarov, G. Ya. Slutsker et al., Fizika Tv. Tela, 58, No. 4, 814-820 (2016).

    Google Scholar 

  31. A. G. Makarov, A. V. Demidov et al., Khim. Volokna, No. 6, 60-67 (2015).

  32. A. G. Makarov, N. V. Pereborova et al., Khim. Volokna, No. 6, 68-72 (2015).

  33. A. G. Makarov, N. V. Pereborova et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 5 (359), 48-58 (2015).

  34. A. G. Makarov, A. V. Demidov et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 6 (360), 194-205 (2015).

  35. A. G. Makarov, N. V. Pereborova et al., Khim. Volokna, No. 1, 37-42 (2016).

  36. A. G. Makarov, A. V. Demidov et al., Khim. Volokna, No. 2, 52-58 (2016).

  37. A. V. Demidov, A. G. Makarov et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 1 (367), 250-258 (2017).

  38. A. G. Makarov, N. V. Pereborova et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 2 (368), 309-313 (2017).

  39. A. G. Makarov, N. V. Pereborova et al., Izv. Vuzov Tekhnol. Tekst. Prom-sti, No. 4 (370), 287-292 (2017).

  40. A. G. Makarov, N. V. Pereborova et al., Khim. Volokna, No. 1, 69-73 (2017).

  41. A. G. Makarov, N. V. Pereborova et al., Khim. Volokna, No. 2, 59-63 (2017).

  42. A. V. Demidov, A. G. Makarov et al., Khim. Volokna, No. 4, 46-51 (2017).

Download references

This work was financially supported by a grant from the Russian Foundation for Basic Research. Project 18-31-00186.

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to A. G. Makarov.

Additional information

Translated from Khimicheskie Volokna, Vol. 50, No. 3, pp. 94-97, May-June, 2018.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Makarov, A.G., Pereborova, N.V., Kozlov, A.A. et al. Computer-Assisted Prediction and Qualitative Analysis for Polymer Parachute Cords. Fibre Chem 50, 239–242 (2018). https://doi.org/10.1007/s10692-018-9968-1

Download citation

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10692-018-9968-1

Keywords

Navigation