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

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1068
  • Pages: 40-42
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Heading: At the enterprises and institutes

The results of the development and modeling of large-sized products based on sheet thermoplastic composite materials with increased fire resistance, which are a three-layer sandwich structure, obtained from structural thermoplastics reinforced with discrete glass fibers. It is shown that high physical and mechanical characteristics of glass-filled composites based on aromatic polyesters make it possible to manufacture fire-resistant products for various fields of technology.
Grigoriev SN, Krasnovskii AN, Kazakov IA The impact of pre-heating on pressure behavior in tapered cylindrical die in pultrusion of large-sized composite rods // Advanced Materials Research. 2015. V. 1064. P. 120? 127. DOI: 10.4028 / www.sci- scientific.net / AMR.1064.120 Grigoriev S. N., Krasnovsky A. N., Kvachev K. V. Investigation of glass fiber impregnation in the process of pultrusion of polymer composite materials // Glass and ceramics. 2014.? 12, p. 28? 30. Grigor? Ev SN, Krasnovskii AN, Kvachev KV Permeation of Glass Fibers During Pultrusion of Polymer Composite Materials // Glass and Ceram. 2014. V. 71. N 11? 12.P. 443? 445. Grigoriev SN, Krasnovsky AN, Kazakov IA Influence of preliminary heating of a binder on the quality of glass composite pultruded rods // Glass and Ceramics. 2015.? 8, p. 36? 40. Grigor? Ev SN, Krasnovskii AN, Kazakov IA Effect of Preliminary Heating of the Binder on the Quality of Glass Composite Pultrusion Rods // Glass and Ceram. 2015. V. 72. N 7? 8.P. 299? 302. Grigoriev SN, Krasnovskii AN, Kazakov IA The friction force determination of large-sized composite rods in pultrusion // Applied Composite Materials. 2014. V. 21. N 4. P. 651? 659. doi: 10.1007 / s10443-013-9360-5. Kutin AA, Krasnovskii AN, Kazakov IA The Fiber Orientation Angle Determination for a Composite Anisotropic Solid Rod in Pultrusion // Advanced Materials Research. 2014. V. 941. N 26. P. 2273? 2278.doi: 10.4028 / www.scien-tific.net / AMR.941-944.2273. Krasnovsky A.N., Egorov S.A. Development of shock-resistant flame-resistant products from sheet thermoplastic composite materials. Ogneupory i tekhnicheskaya keramika. 2015.? 8, p. 46? 49. Krasnovsky AN, Egorov SA Modeling of large-size shock-resistant products from sheet thermoplastic composite materials // Tr. XVII scientific conference? Mathematical modeling and informatics ?: in 2 volumes. V. 2. M .: ITs MGTU? STANKIN ?, 2015. P. 85? 89. Kerber ML, Vinogradov VM, Golovkin GS et al. Polymer composite materials: structure, properties, technology / ed. A.A. Berlin. SPb .: Professiya, 2008.560 p. Mikhailin Yu. A. Structural polymer composite materials. 2nd ed. Moscow: Scientific bases and technologies, 2008.822 p.

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Krasnovskiy A. N., Egorov S. A. Development of glass-filled composite materials with improved fire resistance. Steklo i keramika. 2016:89(12):40-42. (in Russ). UDK 678.539