Carbon and Glass Fibers for Polymer Composites

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The paper gives a brief description of carbon and glass fibers used to obtain polymer composite materials with high thermal, physical and mechanical characteristics. Some methods for surface activation of carbon and fiberglass, which will be used to increase the adhesion interactions at the fiber-polymer boundaries, are presented.

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19-26

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August 2019

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© 2019 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.J. Leigh, R. J. Bradley, Ch. P. Purssell, D. R. Billson, D. A. Hutchins, A Simple, Low-Cost Conductive Composite Material for 3D Printing of Electronic Sensors, PLoS ONE. 7-11 (2012) 365.

DOI: 10.1371/journal.pone.0049365

Google Scholar

[2] http://www.rec3d.ru/products/filament/.

Google Scholar

[3] C.K. Chua, K.F. Leong, Lim CS in Rapid Prototyping: Principles and Applications, 3rd Edition, World Scientific, (2010).

Google Scholar

[4] Meleshko A.I., Polovnikov S.P. Carbon, carbon fibers, carbon composites, Science PRESS,, Moscow, (2007).

Google Scholar

[5] Carbon fibers and carbon composite: Trans. from English / Ed. E. Fitzer, Mir, Moscow, (1998).

Google Scholar

[6] P.S. Postnikov, P.V. Petunin, O.A. Guselnikova, B.M. Prokhorenko, Synthesis of structured composites for additive technology, High technologies in modern science and technology: a collection of scientific papers of the IV International Scientific and Technical Conference of Young Scientists, Graduate Students and Students, 2015, TPU Publisher, Tomsk, 262-266.

Google Scholar

[7] Nguyen Chan Hung. Modification of carbon nanotubes and nanofibers to obtain ceramic nanocomposites // Diss. for the degree of cand. tech. sciences. Moscow, Mendeleev RChTU. (2009).

Google Scholar

[8] Nguyen Huu Van. Production of carbon nanomaterials and zirconium sorption by them // Diss. for the degree of cand. chem. sciences. Moscow, Mendeleev RChTU.(2013).

Google Scholar

[9] D.A. Beeva, A.A. Beev, A.K. Mikitaev, The method of processing carbon nanofillers, Patent of the Russian Federation, No. 2474534, Publ. 10.02. (2013).

Google Scholar

[10] D.A. Beeva, A.A. Beev, A.K. Mikitaev, Polymer nanocomposites and method for their production, Patent of the Russian Federation, No. 2474594, Publ. 10.02. (2013).

Google Scholar

[11] D.A. Beeva, E.Y. Beider, A.K. Mikitaev, A.A. Beev, Patent of the Russian Federation No. 2536969, Publ. 10.27.(2014).

Google Scholar

[12] Chukov D.I. Formation of the structure and properties of composite materials based on ultra high molecular weight polyethylene reinforced with carbon fibers. // Diss. for the degree of cand. tech. sciences, Moscow, MISIS,, (2014).

Google Scholar

[13] Y.J. Ma, J.L. Wang, X.P. Cai, The effect of electrolyte on surface composite and microstructure of carbon fiber by electrochemical treatment, Int. J. Electrochem. Sci. 8 (2013) 2806–2815.

Google Scholar

[14] Beeva D.A. Polyhydroxyethers and composite materials based on them. // Diss. for the degree of doctor of chemical sciences. –Nalchik., KBSU them. Berbekova H.M. (2012).

Google Scholar

[15] S.V. Bukharov, I.P. Miychenko, Fillers for polymeric materials, Tutorial. MATI, - Tsiolkovsky K.E. Russian State Technological University. Moscow, (2010).

Google Scholar

[16] Handbook of composite materials: In 2 books: Book. Transl. from English / Ed. J. Lubin, Mashinostroenie, Moscow,(1988).

Google Scholar

[17] Fillers for polymer composites: a reference guide. /Ed. G.S. Katz and D.V. Milevsky; Transl. from English / Ed. P.G. Babaevsky. Chemistry, Moscow,(1981).

Google Scholar

[18] Plastics of structural designation (thermosets) /Ed. E.B. Trostyanskaya. Chemistry, Moscow,(1974).

Google Scholar

[19] V.A. Bunakov, G.S. Golovkin, et al., Reinforced plastics: Ref. allowance, MAI, Moscow, (1997).

Google Scholar

[20] N.N. Trofimov, A.N. Kalenchuk, M.Z. Kanovich, Analysis of the physicochemical processes taking place in the transition layer of the fiberglass system - coupling – binder, NIITEKHIM, Moscow,(1991).

Google Scholar