High-Strength Concrete Made of Nonferrous-Metals Industry Waste

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Abstract:

The use of calcium polysulfide sealer, which can be obtained by dilution of sulphur in lime suspension heated to 95 оС, when producing concrete of high specific weight provides improvement of its strength while being compressed by 30-50%. In doing so, up to 50% portland cement in the composition of binding one can be replaced with metallurgic ferriferrous slag or ferriferous stubs.

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37-42

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June 2018

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[1] M.M. Sychev, Consolidation of binding materials, Stroyizdat, Leningrad, (1974).

Google Scholar

[2] V.B. Ratinov, Y.L. Zabezhinsky, T.I. Rozenberg, The study of the mechanism of hardening of gypsum binding materials in the presence of additives, Proceed. of the USSR Acad. of Sci. 109 (1956) 979-981.

Google Scholar

[3] V.S. Ramachandran, Possible states of Chloride in Hydratson of Trucalcium Silicate in the Presence of Calcium Chloride, Materiax et Costr, 4 (1971) 3-12.

Google Scholar

[4] H.G. Kurczyk and H.G. Schwiete, Electron Microscopic and Thermochemical Investigations on the Hydration of the Calcium Silicates 3CaO×SiO2 and β-2CaO×SiO2 and the Effects of Calcium Chloride and Gypsum on the Process of Hydration, Tonind Ztg, 84 (1960).

Google Scholar

[5] J. Skalny and J.N. Maycock, Mechanisms of Acceleration by Calcium Chloride: A, Review, 77th Annual Meeting ASTM, Washington, June, (1974).

Google Scholar

[6] G. Zimonyi and G.Balazs, Physikalische Prufuhg des Wirkugs Mechanismus, Silikattechnik, 17 (1966) 14-16.

Google Scholar

[7] M. Collepardr, G. Rossi, M.C. Spiga, Hydration of Tricalcium Silicate in Presence of Electrolytes, Annali Di Chimica, 61 (1971) 137-148.

Google Scholar

[8] V.S. Ramachandran, Additives to cements, Stroyizdat, Moscow, (1988).

Google Scholar

[9] Patent No. 4193809 USA, С04В7/02. High strength concrete products. Published 18.03.82.

Google Scholar

[10] N.A. Mashkin and M.A. Elesin, Patent #2118620 RF. Complex additive for concrete and mortar mixes. Published 10.09.98. Bulletin #25.

Google Scholar

[11] M.A. Elesin, G.I. Berdov, A.V. Pavlov, The study of the mechanism of aquatic transformation of portland cement in the solution of calcium polysulfide, Zhurnal prikladnoy khimii, 75 (2002) 903-907.

Google Scholar

[12] M.A. Elesin, Calcium polysulfide as a substitute for early-strength portland cement in concrete, Izvestiya vuzov. Stroitelstvo, 5 (2008) 25-28.

Google Scholar

[13] A.F. Polak, Consolidation of monomineralic binding materials, Stroyizdat, Moscow, (1996).

Google Scholar

[14] N.V. Sviridov and M.G. Kovalenko, Concrete with durability 150 MPa on general-purpose concrete, Beton i zhelezobeton, 2 (1990) 21-22.

Google Scholar

[15] M.A. Elesin, A.V. Pavlov, G.I. Berdov, The study of the mechanism of aquatic transformation of portland cement in the solution of calcium polysulfide, Zhurnal prikladnoy khimii, 75 (2000): 903-907.

Google Scholar

[16] M.A. Elesin, A.V. Pavlov, Y.B. Sokolskaya, The study of aquation of portland cement in the solution of sulphur in hydrated lime, Izvestiya vuzov. Stroitelstvo, 4 (2000) 34-39.

Google Scholar