Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

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  • Pages: 30-35
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The possibility of obtaining ceramic fibers of zirconium oxide by electrospinning is considered. The factors influencing the fiber diameter and the presence of tape inclusions have been established. It is shown that molding solutions under the action of an electric field make it possible to obtain fibers in a wide range of viscosities. When the values ??of the viscosities of the molding solutions are 0.45 & mdash; 0.69 Pa * s, the stability of the fiber production process is achieved, while the fiber diameter is comparable to the diameter of the fibers obtained by the traditional method (0.9 - 1.5 ?m)
Kablov E. N. Innovative developments of FSUE? VIAM? SSC RF for the implementation of? Strategic directions for the development of materials and technologies for their processing for the period up to 2030? // Aviation materials and technologies. 2015.? 1 (34). S. 3? 33. DOI: 10.18577 / 2071-9140-2015-0-1-3-33. Kablov, E.N., Shchetanov, B.V., Ivakhnenko, Yu.A., and Balinova, Yu.A., Promising high-temperature reinforcing fibers for metal and ceramic composite materials, Tr. VIAM: electron. scientific and technical zhurn. 2013.? 2. Art. 05. URL: http: // www. viam-works.ru (date accessed: 21.04.2017). Babashov, V.G. and Varrik, N.M., High-temperature flexible fibrous heat-insulating material, Tr. VIAM: electron. scientific and technical zhurn. 2015.? 1. Art. 03. URL: http://www.viam-works.ru (date of access: 21.04.2017). DOI 10.18577 / 2307-6046-2015-0-1-3-3 Babashov V.G., Varrik N.M. Thermal insulation materials for modern aircraft // News of Materials Science. Science and technology: electronic . scientific and technical zhurn. 2016.? 3 (21). Art. 01. URL: http://www.materialsnews.ru (date of access: 21.04.2017). Thermal insulation. Materials, designs, technologies: ref. manual / ch. ed. S. M. Kochergin. M .: Stroy? Inform, 2008.440 p. Pullar RC, Taylor MD, Bhattacharya AK The manufacture of partially-stabilized zirconia fibers blow spun from an alcoxide derived aqueous sol-gel precursor // Journal of the European Ceramic Society. 2001. V. 21. P. 19? 27. Zircar Zirconia Inc: [official. site]. URL: http: // www. zircarzirconia.com (date accessed: 30.03.2018). Varrik, N.M. and Ivakhnenko, Yu.A., Features of the production of zirconium oxide fiber (review), Tr. VIAM: electron. scientific and technical zhurn. 2015.? 10. Art. 08. URL: dx.doi.org/ 10.18577 / 2307-6046-2015-0-10-8-8 Golovin Yu.I., Kuznetsov D.G., Vasyukov V.M. et al. Composites based on zirconium oxide and their application for the immobilization of radioactive waste // Vestnik TSU. 2013. T. 18. Iss. 6. S. 3150. Zhang QH, Feng YQ, Da SL Preparation and char-acterization of zirconia-silica and zirconia-magnesia supports for normal-phase liquid chromatography // Analytical Sciences. 1999. V. 15.No. 8.R. 767? 772. Shalliker RA, Douglas GK, Rintoul L. et al. The measurement of pore size distribution, surface areas and pore volumes of zirconia, and zirconia-silica mixed oxide sta-tionary phases using size exclusion chromatography // Journal of Liquid Chromatography and Related Tech-nologies. 1997. V. 20. No. 10.P. 1471? 1488. Shalliker RA, Rizk M., Stocksiek C., Sweeney AP Retention behavior of basica solutes on zirconia-silica composite stationary phase supports in normal phase liquid chromatography // Journal of Liquid Chromatog-raphy and Related Technologies. 2002. V. 25. No. 4. P. 561? 572. Gomez R., Lopez T., Tzompantzi T. et al. Zirconia / silica sol-gel catalysts: effect of surface heterogeneity on the selectivity 2-propanol decomposition // Langmuir. 1997. V. 13. P. 970? 973. Saint Gobain: [officer. site]. URL: http://www.norpro.saint-gobain.com/ (date of treatment 05/27/2017). Yiyang Zhao, Yufeng Tang, Yingchen Guo, Xiaoyu Bao. Studies of electrospinning process of zirconia nan-ofibers // Fibers and Polymers. 2010. V. 11. No. 8.P. 1119? 1122. Fang Gao, Kai Liu, Hai Jian Li, Jian Mei Qi. Zirconia Fiber Memberance Prepared by Electrospinning // Key Engineering Materials. 2012. V. 512? 515. Chapter 2. P. 443? 446. DOI: 10.4028 / www.scientific.net / KEM.512-515.443 Li JY, Tan Y., Xu FM et al. Hollow fibers of yttria-stabilized zirconia (8YSZ) prepared by calcination of electrospun composite fibers // Materials Letters. 2008. V. 62. P. 2396? 2399 Filatov Yu. N. Electroforming of fibrous materials (EVS-process). M., 2001.231 p. Zhang HB, Edirisinghe MJ Electrospinning zirconia fiber from a suspension // Journal of the American Ce-ramic Society. 2006. V. 89. No. 6.P. 1870? 1875. Qin D., Gu A., Liang G., Yuan L. A facile method to prepare zirconia electrospun fibers with different mor-phologies and their novel composites based on cyanate ester resin // RSC Advances. 2012. No. 2.P. 1364? 1372. Korenkov VV, Rodaev VV, Shuklinov AV et al. Synthesis and properties of multifunctional ceramic nanofibers obtained by the method of electrospinning // Vestnik TSU. 2013. T. 18.? 6.S. 3156? 3159. Kablov EN, Shchetanov BV, Ivakhnenko Yu. A. Production, structure and strength of Al2O3 fibers // Coll. tr. int. conf. "Theory and practice of technologies for the production of products from composite materials and new metal alloys". M .: Knowledge, 2004.S. 258? 260. Shchetanov BV, Kablov EN, Shcheglova TM Mechanism of the formation of a stabilized structure in highly heat-resistant polycrystalline fibers of the Al2O3? SiO2 system, obtained by sol-gel technology, Sb. mater. 24th Int. conf. "Composite materials in industry". Yalta, 2004.S. 324? 326. Kablov EN, Grashchenkov DV, Isaeva NV, Solntsev SS Promising high-temperature ceramic composite materials // Russian Chemical Journal. 2010. T. LIV. ? 1.S. 20? 24. Shchetanov BV, Balinova Yu. A., Lyulyukina G. Yu., Solov'eva EP Structure and properties of continuous polycrystalline fibers? -Al2O3 // Aviation materials and technologies. 2012.? 1.S. 13? 18. Kablov EN, Shchetanov BV, Ivakhnenko Yu. A. et al. Zirconium Dioxide Fibers for a New Generation of Aviation and Space Materials. mater. 25th Intern. conf. "Composite materials in industry". Yalta, 2005.S. 320? 323. Maksimov VG, Varrik NM Zirconium oxide fibers for alkaline battery separators // Glass and ceramics. 2017.? 8, p. 32? 39. ? Maksimov VG, Varrik NM Zirconium Oxide Fibers for Cell Separators of Alkaline Storage Batteries // Glass Ceram. 2017. V. 74. No. 7-8. P. 288? 294.? Pat. 2212388 RF 2001130964/03. A method of obtaining a high-temperature fiber based on aluminum oxide; declared November 19, 2001, publ. 20.09.2003.

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Balinova Ju. A., Varrik N. M., Istomin A. V., Ljuljukina G. Ju. Electrospinning Formation of Zirconia Fibers. Steklo i keramika. 2020:93(8):30-35. (in Russ). UDK 666.3.03