Skip to main content
Log in

Zirconium Dioxide Fibers and Methods of Obtaining Them

  • Published:
Fibre Chemistry Aims and scope

New designs of high-energy machine building units require materials with improved performance properties, especially for operating in high-temperature conditions. Heat-shielding materials based on refractory oxides have a number of advantages due to extremely low values of thermal conductivity and bulk density and high operating temperatures. At the current stage of technological development in the world, mass production and application of heat-shielding materials based on alumina and silica fibers have been mastered. Zirconium dioxide fibers with high refractory properties are used to create heat-shielding and heat-insulating materials for operating temperatures above 1600 °C. In this paper, an attempt was made to obtain zirconium dioxide fibers in two ways – by the sol-gel method and by electrospinning, to produce heat-insulating materials for high-temperature applications.

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.

Fig. 1.
Fig. 2.
Fig. 3.
Fig. 4.
Fig. 5.
Fig. 6.
Fig. 7.

Similar content being viewed by others

References

  1. E. N. Kablov, Aviatsyonnye Materialy i Tekhnologii , No. 1 (34), 3-33 (2015). DOI: https://doi.org/10.18577/2071-9140-2015-0-1-3-33.

  2. E. N. Kablov, B. V. Shchetanov, et al., Trudy VIAM, No. 2, Art. 05 (2013). URL: http://www.viam-works.ru (access date: April 21, 2017).

  3. V. G. Babashov and N. M. Varrik, Trudy VIAM, No. 1, Art. 03 (2015). URL: http://www.viam-works.ru (access date: April 21, 2017). DOI https://doi.org/10.18577/2307-6046-2015-0-1-3-3

  4. V. G. Babashov and N. M. Varrik, Novosti Materialovedeniya, No. 3 (21), Art. 01 (2016). URL: http://www.materialsnews.ru (access date: April 21, 2018).

  5. A. M. Zimichev, N. M. Varrik, and A. V. Sumin, Novosti Materialovedeniya, No. 3 (21), Art. 09 (2016). URL: http://www.materialsnews.ru (access date: April 21, 2017).

  6. Zircar Zirconia Inc: [official site]. URL: http://www.zircarzirconia.com (access date: April 21, 2017).

  7. Stabilized Tetragonal Zirconia Fibers and Textiles: Pat. 3860529 USA. No. 249057; filed May 01, 1972; publ. June 14, 1975. 6 p.

  8. Process for the Preparation of Zircon Coated Zirconia Fibers: Pat. 3861947 USA. No. 293768; filed October 02, 1972; publ. January 21, 1975. 6 p.

  9. Production of zirconia filament: pat. H0491227 Japan. No. 19900199017; filed July 30, 1990; publ. March 24, 1992. 2 p.

  10. Fine coagulated particles of ultrafine monoclinic zirconia crystals oriented in a fiber bundle-like form and method of manufacturing them: Pat. 4722833 USA. No. 939961; filed December 10, 1986; publ. February 02, 1988. 5 p.

  11. Inorganic oxide fibres and their production: Pat. 4792478 USA. No. 874999; filed June 16, 1986; publ. December 20, 1988. 14 p.

  12. Method for preparing fully-stabilized tetragonal-phase zirconia crystal fibers: Pat. 102775143 China. No. 20121299746; filed August 22, 2012; publ. November 14, 2012. 6 p.

  13. Zirconium dioxide Fibers and Process for Their Preparation: Pat. 4937212 USA. No. 286654; filed December 19, 1988; publ. June 26, 1990. 10 p.

  14. K. Bussarin and P. Manop, “Fabrication of Ceramic Nanofibers Using Atrane Precursor ‘Nanofibers’”, Ed. A. Kumar. Chapter 19. ISBN 978-953-7619-86-2.

  15. Dake Qin, Aijuan Gu, et al., RSC Advances, No. 2, 1364-1372 (2012). DOI: https://doi.org/10.1039/C1RA00974E.

  16. Abdul-Majeed Azad, Mater. Lett., 60, No. 1, 67-72 (2006). DOI: https://doi.org/10.1016/j.matlet.2005.07.085.

    Article  CAS  Google Scholar 

  17. Guo-Xun Sun, Fu-Tian Liu, et al., J. Alloys a. Compounds, 649, No. 15, 788-792 (2015). doi.org/10.1016/j.jallcom.2015.03.068

    Article  CAS  Google Scholar 

  18. Yiyang Zhao, Yufeng Tang, et al., Fibers a. Polymers, 11, No. 8, 1119-1122 (2010).

    Article  CAS  Google Scholar 

  19. Fang Gao, Kai Liu, et al., Key Engineering Materials, Vol. 512-515, Chapter 2, 443-446 (2012). DOI: https://doi.org/10.4028/www.scientific.net/KEM.512-515.443.

  20. J. Y. Li, Y. Tan, et al., Mater. Lett., 62, 2396-2399 (2008).

    Article  CAS  Google Scholar 

  21. Yu. N. Filatov, Electrospinning of Fibrous Materials [in Russian], Neft’ i Gaz, Moscow (2001) 231 p.

  22. E. N. Kablov, B. V. Shchetanov, and Yu. A. Ivakhnenko, Coll. Works Int. Conf. “Theory and practice of manufacturing technologies for products made from composite materials and new metal alloys” [in Russian], Znanie, Moscow (2004) p. 258-260.

    Google Scholar 

  23. B. V. Shchetanov, E. N. Kablov, and Ò. Ì. Shcheglova, Coll. Mater. 24th Int. Conf. “Composite materials in industry” [in Russian], Yalta (2004) p. 324-326.

  24. E. N. Kablov, D. V. Graschenkov, et al., Ros. Khim. Zh., 54, No. 1, 20-24 (2010).

    CAS  Google Scholar 

  25. B. V. Shchetanov, Yu. A. Balinova, et al., Aviatsyonnye Materialy i Tekhnologii, No. 1, 13-18 (2012).

  26. E. N. Kablov, B. V. Shchetanov, et al., Coll. Mater. 25th Int. Conf. “Composite materials in industry” [in Russian], Yalta (2005) p. 320-323.

  27. Yu. A. Ivakhnenko, V. G. Babashov, et al., Aviatsyonnye Materialy i Tekhnologii, No. S, 380-385 (2012).

  28. B. V. Shchetanov, Yu. A. Ivakhnenko, and V. G. Babashov, Ros. Khim. Zh., 54, No. 1, 12-19 (2010).

    CAS  Google Scholar 

  29. E. N. Kablov, Voprosy Materialovedeniya, No. 1, 64-67 (2006).

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Yu. A. Balinova.

Additional information

Translated from Khimicheskie Volokna, No. 1, pp. 12 – 20, January – February, 2018.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Balinova, Y.A., Varrik, N.M., Istomin, A.V. et al. Zirconium Dioxide Fibers and Methods of Obtaining Them. Fibre Chem 50, 10–18 (2018). https://doi.org/10.1007/s10692-018-9919-x

Download citation

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10692-018-9919-x

Keywords

Navigation