Fine-Grained Lightweight Concrete from Volcanic Tuffsawing Waste

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Abstract:

The article is devoted to the study of the fine-grained lightweight concrete properties on porous aggregates of volcanic tuff from the Kamenskiy deposit in Kabardino-Balkaria, prepared on tuff sand.

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Materials Science Forum (Volume 1043)

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115-120

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August 2021

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© 2021 Trans Tech Publications Ltd. All Rights Reserved

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[1] A. A. Afanasyev, Construction of buildings and structures from monolithic reinforced concrete, Stroyizdat, Moscow, (1990).

Google Scholar

[2] A. A. Afanasyev, Technological reliability of monolithic house-building. ICE3 (2001) 24-27.

Google Scholar

[3] A. A. Afanasyev, E.P. Matveev, Yu.A. Minakov, Technological efficiency of accelerated methods of hardening of concrete in monolithic house building, Concrete and reinforced concrete. 8 (1997) 36-37.

Google Scholar

[4] M.A. Akhmatov, The use of waste stone cutting of tuff deposits and loose porous rocks as aggregates for lightweight concrete and structures made of them, Nalchik, (1981).

Google Scholar

[5] M.A. Akhmatov, The effectiveness of lightweight concrete and reinforced concrete structures useon aggregates from stone waste and loose porous rocks of volcanic origin, PhD Thesis 05.23.01, 05.23.05, Rostov-on-Don, (1999).

Google Scholar

[6] M.Z. Simonov, S.G. Shaginyan, The use of natural porous aggregates in the production of concrete and reinforced concrete, Concrete and reinforced concrete. 7 (1985) 6.

Google Scholar

[7] M.A. Akhmatov, The effectiveness of the building materials and concrete use, Nalchik Elbrus, (1986).

Google Scholar

[8] V.P. Rengarten, Volcanic tuffs in the vicinity of Nalchik in the North Caucasus, Proceedings of Chief Geology and Exploration management, (1930).

Google Scholar

[9] R.L. Mayilyan, M.A. Akhmatov, Reinforced concrete on porous stone waste, Stroyizdat, Moscow, (1987).

Google Scholar

[10] G.V. Nesvetaev, Concrete: study guide, Phoenix, Rostov-on-Don, (2011).

Google Scholar

[11] M.A. Akhmatov, Lightweight concrete and reinforced concrete structures based on aggregates from stone waste and loose porous rocks, Nalchik, (2010).

Google Scholar

[12] GOST 25192-2012. Concrete. Classification and general technical requirements, Moscow, Standartinform, (2013).

Google Scholar

[13] GOST 9758-2012. Porous inorganic aggregates for construction work. Testmethods, Moscow, Standartinform, (2014).

Google Scholar

[14] B.Kh. Beshtokov, Shrinkage compensated concretes on natural porous aggregates of Kabardino-Balkaria for winter concreting, PhD Thesis 05.23.05, Rostov-on-Don, (2006).

Google Scholar