Nanotechnological Techniques of Obtaining Building Composites on a Silicate Matrix of Thermo-Moisture Hardening

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Using nanotechnological techniques of complex activation, the compositions and manufacturing technology of building composites on a silicate matrix of thermo-moisture hardening of reduced energy intensity have been developed.

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44-49

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August 2019

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© 2019 Trans Tech Publications Ltd. All Rights Reserved

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[1] V.I. Babushkin, G.M. Matveev, O.P. Mchedlov-Petrosyan, Thermodynamics of silicates, Stroyizdat, Мoskow, (1986).

Google Scholar

[2] H. Taylor, Chemistry of Cement, Translation from English, The World, Moscow, (1996).

Google Scholar

[3] O. Shynkevych, Y. Lutskin, O. Koichev, G. Bondarenko, A. Tertychnyi, I. Myronenko, Nanotechnological and Energysaving Methods of Production of Building Composites, MATEC Web of Conference, 116 (2017), 01015 (10).

DOI: 10.1051/matecconf/201711601015

Google Scholar

[4] Y. Lutskin, O. Shynkevych, Lutskin, A. Aniskin, Multiple influence of silicacontaining component of the chemobiogenic origin on the structure and properties of composites on silicate matrix, Technical J. Tehnički glasnik, 11-4 (2017) 160-165.

Google Scholar

[5] V.I. Solomatov, V.N. Vyrovoy, V.S. Dorofeev, Composite construction materials and structures of low material consumption, Budivelnik, Kyiv, (1991).

Google Scholar

[6] P.V. Krivenko, E.K. Pushkareva, Durability slag-alkali concrete, Kyiv, (1993).

Google Scholar

[7] Y.M. Butt, M.M. Sychev, V.V. Timashev, Chemical technology of binders, High school, Moscow, (1980).

Google Scholar

[8] Y. Lutskin, O. Shynkevych, I. Myronenko, S. Zakabluk, O. Surkov, The influence of the content on structure and properties of geopolymer composites on silicate matrix , In: MATEC Web of Conferences, 230 (2018), 03011.

DOI: 10.1051/matecconf/201823003011

Google Scholar

[9] B. Middendorf, N.B. Singh, Nanoscience and nanotechnology in cementations materials, J. Cement International, 4 (2006), 80-86.

Google Scholar

[10] Y. Lutskin, E. Shinkevich, Aerated Complex Activated Composites on Silicate Matrix of Thermal-moisture Hardening, In: Abstract Book of Proceeding of 14th International Congress on the Chemistry of Cement, Beijing, China, 2 (2015), 632.

Google Scholar

[11] E. Shinkevich, Kinetic-mathematical model of hydration of lime-silica binder, which activated together with a fine-grained filler, In: Proceeding of 13th International Congress on the Chemistry of Cement, Madrid, Spain (2011), 351-358.

Google Scholar

[12] C. Poole, F. Owens, C. Poole, Nanotechnology, Translated from English by ed. Y.I. Goveena, Technosphere, Moskow, (2005).

Google Scholar

[13] I.N. Serov, V.A. Zhabreev, V.I. Margolin, Problems of nanotechnology in modern materials science, J. Physics and chemistry of glass, 29-2 (2003), 241-255.

Google Scholar

[14] I. Shtark, B. Viht, Durability of concrete, Translated from German А. Tulaganova, Under edition P.V. Krivenko, Kiev, (2004).

Google Scholar

[15] E. Shinkevich, E. Lutskin, Relationship between microstructure and properties of silicate composites on the basis of activated lime-silica binder, In: Proceeding of 13th International Congress on the Chemistry of Cement, Madrid, Spain (2011), 359-365.

Google Scholar

[16] E. Shinkevich, E. Lutskin, O. Gnyp, A. Koichev, J. Dotsenko, The influence of modification of the structure of silicate materials on their properties after non-autoclaved hardening. In: Proceeding of the 8th International Symposium Brittle Matrix Composites, Warsaw, Poland (2006), 517-525.

DOI: 10.1533/9780857093080.517

Google Scholar

[17] V. Voznesenskiy, T. Lyashenko, J. Ivanov. I. Nikolov, Computer and optimization of composite materials, Budivelnik, Kyiv, (1989).

Google Scholar