SELF-CONSOLIDATING CONCRETE USED IN THE MONOLITHIC CONSTRUCTION OF EARTHQUAKE-RESISTANT TALL BUILDING
https://doi.org/10.21822/2073-6185-2016-43-4-133-143
Abstract
Objectives. The development of high-strength concrete based on experience both with domestic and foreign concretes has led to the production of a self-consolidating concrete (SCC) formula. Method. Raw materials sourced from the Chechen Republic were used in the SUBconcrete formula, based on materials having different classes of compressive strength as well as the incorporation of polycarboxylate as an additive. Results. An investigation was carried out on natural and technogenic raw materials from the Chechen Republic and other regions of the country. Compositions of high-grade SCC with a compressive strength of B100 and higher are achieved with an integrated approach using both natural and man-made raw materials. The formulae of the basic concrete reinforcing technology are examined together with their physico-mechanical properties. The results of the study of locally sourced concrete, as well as that purchased from "Pavlovskgranit" and OOO "Progress" for testing from the Republic of North Ossetia–Alania, are provided. Of the various manufacturers' cements investigated, the highest quality Portland cement CEM I 4.5N was selected from the Tula cement manufacturers in the town of Chiri-Yurt. The fillers used were microsilica sourced from the Novokuznetsk plant, inactivated MP-1 mineral powder produced in Kaluga and fly ash sourced from Nevinnomyssk. Conclusion. The results of the studies show that the raw material potential of our country allows for the production of self-consolidating concrete from class B 25 to B100 and higher for use in monolithic construction, including high-rise. The concrete compositions arrived at are characterised by their high physical and mechanical properties and can be used in high-rise concrete construction sites operating in earthquake-prone areas.
About the Authors
S. A. AlievRussian Federation
Salambek A. Aliev – Cand. Sc.(Technical), Assoc.Prof., technology of building production.
100 H.A. Isayev Ave.,Grozny 364905, Russia
T. S. Murtazayeva
Russian Federation
Tamara S. Murtazayeva – assistant.
100 H.A. Isayev Ave.,Grozny 364905, Russia
M. S. Saydumov
Russian Federation
Magomed S. Saydumov – Cand. Sc.(Technical), Assoc.Prof., technology of building production.
100 H.A. Isayev Ave.,Grozny 364905, Russia
M. S. Salamanova
Russian Federation
Madina S. Salamanova – Cand. Sc.(Technical), Assoc.Prof., technology of building production.
100 H.A. Isayev Ave.,Grozny 364905, Russia
References
1. Bazhenov Yu.M. Beton: tekhnologii budushchego. Stroitelstvo: novyye tekhnologii – novoye oborudovanie. M.: ID "Panorama"; 2009;8:29-32. [Bazhenov Yu.M. Concrete: future technologies. Construction: new technologies – new equipment. Moscow: Panorama Publ., 2009;8:29-32. (In Russ.)]
2. Evropeyskiy normativnyy dokument po samouplotnyayushchemusya betonu: DAfStb-RichtlinieSelbsverdichtenderBeton (SVB-Richtlinie). Ausgabe November 2003. [European normative document on self-compacting concrete: DAfStb-RichtlinieSelbsverdichtenderBeton (SVB-Richtlinie). Ausgabe November 2003. (In Russ.)]
3. Zhernovsky I.V., Strokova V.V., Koshukhova N.I., Sobolev K.G. The use of mechano-activation for nanostructuring of quartz materials. Nanotechnology in Construction. NIKOM 4. Agios Nikolaos, Greece; 2012.
4. Kaprielov, S.S. i dr. Modifitsirovannyye vysokoprochnyye betony klassov V80 i V90 v monolitnykh konstruktsiyakh. Ch. II. Stroitelnyye materialy. 2008;3:9-13. [Kaprielov, S.S. et al. Modified high strength concrete of class B80 and B90 in the monolithic structures. Pt. II. Building materials. 2008;3:9-13. (In Russ.)]
5. Monolitnoye stroitelstvo na territorii Rossii: istoriya vnedreniya i perspektivy razvitiya. Sayt OOO "NPO "ANTARES treyd". Sankt Peterburg, 2015. [Monolithic construction in Russia: history of introduction and development prospects. The website "NPO "ANTARES trade". Saint-Petersburg, 2015. (In Russ.)]. Available from: http://antaresstroy.ru/encyclopedia/monolitnoe_stroitelstvo_na_territorii_rossii/
6. Bazhenov Yu.M., Demyanova B.C., Kalashnikov V.I. Modifitsirovannyye vysokokachestvennyye betony. Nauchnoye izdanie. M.: Izdatelstvo Assotsiatsii stroitelnykh vuzov; 2006. 368 s. [Bazhenov Yu.M., Demyanova B.C., Kalashnikov V.I. Modified high-quality concrete. Scientific publication. Moscow: Association of Building Universities Publ.; 2006. 368 p. (In Russ.)]
7. Bazhenov Yu.M., Bataev D.K-S., Murtazaev S-A.Yu. i dr. Melkozernistyye betony iz vtorichnogo syrya dlya remonta i vosstanovleniya povrezhdennykh zdaniy i sooruzheniy. Groznyy; 2011. 342 s. [Bazhenov Yu.M., Bataev D.K-S., Murtazaev S-A.Yu. et al. Fine-grained concrete from secondary raw materials to repair and restore damaged buildings and constructions. Groznyy; 2011. 342 p. (In Russ.)]
8. Salamanova M.Sh., Saydumov M.S., Murtazaeva T.S-A., Khubaev M.S-M. Vysokokachestvennyye modifitsirovannyye betony na osnove mineralnykh dobavok i superplastifikatorov razlichnoy prirody. Nauchno-analiticheskiy zhurnal "Innovatsii i investitsii". 2015;8:159-163. [Salamanova M.Sh., Saydumov M.S., Murtazaeva T.S-A., Khubaev M.S-M. High quality modified concrete based on mineral additives and superplasticizers of different nature. Scientific-analytical magazine "Innovation and investment". 2015;8:159-163. (In Russ.)]
9. Bazhenov, Yu.M., Alimov, L.A., Voronin, V.V. i dr. Tekhnologiya betona, stroitelnykh izdeliy i konstruktsiy. M.: Izd-vo ASV; 2008. 350 s. [Bazhenov, Yu.M., Alimov, L.A., Voronin, V.V. et al. The technology of concrete, building products and structures. Moscow: ASV Publ.; 2008. 350 p. (In Russ.)]
10. Lermit R. Problemy tekhnologii betona. Izdatelstvo LKI; 2007. 296 s. [Lermit R. Problems of concrete technology. LKI Publ; 2007. 296 p. (In Russ.)]
11. Lesovik B.C. Murtazaev S-A.Yu., Saydumov M.S. Stroitelnyye kompozity na osnove otsevov drobleniya betonnogo loma i gornykh porod. Groznyy: MUP Tipografiya; 2012. 192 s. [Lesovik B.C. Murtazaev S-A.Yu., Saydumov M.S. Building composites on the basis of screenings from the concrete crushing and rock. Groznyy: MUP Publ.; 2012. 192 p. (In Russ.)]
12. Fedosov N.N., Klinchuk E.S., Verbitskaya T.L. Novyye stroitelnyye materialy. Stroitelnyye materialy. 2010;3:67-68. [Fedosov N.N., Klinchuk E.S., Verbitskaya T.L. New construction materials. Building materials. 2010;3:67-68. (In Russ.)]
13. Kudryavtsev, A.P. Razrabotka v RAASN novykh vysokoprochnykh i dolgovechnykh stroitelnykh kompozitsionnykh materialov. Stroitelnyye materialy, oborudovanie, tekhnologii XXI veka. 2006;5:14-15. [Kudryavtsev, A.P. Development of new high-strength and durable composite materials in RAACS. Building materials, equipment, technologies of XXI century. 2006;5:14-15.(In Russ.)]
14. Batrakov, V.G. Modifikatory betona novyye vozmozhnosti. Materialy I Vserossiyskoy konferentsii po betonu i zhelezobetonu. M.; 2001. 184-197. [Batrakov, V.G. Concrete modifiers: new opportunities. Proceedings of I All-Russian Conference on Concrete and Reinforced Concrete. Moscow; 2001. 184-197. (In Russ.)]
15. Komokhov, P.G. Shangina, N.N. Modifitsirovannyy tsementnyy beton, ego struktura i svoystva. Tsement. 2002;1-2:43-46. [Komokhov, P.G. Shangina, N.N. Modified cement concrete, its structure and properties. Cement. 2002;1-2:43-46.(In Russ.)]
16. Pazhani K., Jeyaraj R. Study on durability of high performance concrete with industrial wastes. ATI – Applied Technologies & Innovations. Department of Civil Engineering, Anna University Chenna. India; 2010;2(8):19-28.
17. Lesovik, V.S. Geonics. Subject and objectives. Belgorod State Technological University n.a. V.G. Shoukhov. 2012. 100 p.
18. Strokova V.V., Zhernovsky I.V., Fomenko Yu.V., Makarova N.V. Regulation of fine grained concrete efflorescence process. Applied Mechanics and Materials. 2013;357-360:13001303.
19. Murtazaev S-A.Yu., Salamanova M.Sh., Saydumov M.S., Gishlakaeva M.I. Ispolzovanie v melkozernistykh betonakh otkhodov pererabotki gornykh porod. Materialy Vserossiyskoy nauchno-prakticheskoy konferentsii ―Nauka i obrazovanie v Chechenskoy respublike: sostoyanie i perspektivy‖, posvyashchennoy 10-ti letiyu so dnya obrazovaniya KNII RAN. Groznyy; 2011. 181-184. [Murtazaev S-A.Yu., Salamanova M.Sh., Saydumov M.S., Gishlakaeva M.I. The use of waste recycling rocks in fine concrete. Proceedings of All-Russian Scientific-Practical Conference "Science and Education in the Chechen Republic: Status and Prospects", devoted to 10th Anniversary since the Complex Research Institute of RAS formation. Groznyy; 2011. 181-184. (In Russ.)]
20. Murtazaev S-A.Yu., Salamanova M.Sh. Vysokoprochnyye betony s ispolzovaniem fraktsionirovannykh zapolniteley iz otkhodov pererabotki gornykh porod. Zhurnal "Ustoychivoye razvitie gornykh territoriy". 2015;1(23):23-28. [Murtazaev S-A.Yu., Salamanova M.Sh. High strength concrete using graded aggregates from waste rocks. Journal "Sustainable development of mountain territories". 2015;1(23):23-28. (In Russ.)]
Review
For citations:
Aliev S.A., Murtazayeva T.S., Saydumov M.S., Salamanova M.S. SELF-CONSOLIDATING CONCRETE USED IN THE MONOLITHIC CONSTRUCTION OF EARTHQUAKE-RESISTANT TALL BUILDING. Herald of Dagestan State Technical University. Technical Sciences. 2016;43(4):133-143. (In Russ.) https://doi.org/10.21822/2073-6185-2016-43-4-133-143