[1]
EN 1992 Eurocode 2. Design of concrete structures.
Google Scholar
[2]
Akhverdov, I.N. Osnovy fiziki betona [Fundamentals of Physics of concrete] (1981) M., Stroyizdat, il. UDK 666. 972. 017: 53., 464 p. (rus).
Google Scholar
[3]
Usherov-Marshak, A.V., Tsiak, M. Khimicheskiye i mineralnyye dobavki v tekhnologii tsementa i betona [Chemical and mineral supplements in the technology of cement and concrete] (2002) Zaporozhye: Khortitsa, pp.9-17. (rus).
Google Scholar
[4]
Company Polylayer,. Superplastifikator S-3 – Osnova kachestva betona [Superplasticizer-S-3 - the basis of the quality of concrete] (2004) Popular concrete, No. 2, pp.70-74.
Google Scholar
[5]
Izotov, V.S., Ibragimov, R.A. Vliyaniye otechestvennykh giperplastifikatorov na fiziko-mekhanicheskiye svoystva tyazhelogo betona [Effect of domestic hyperplasticizer on physical and mechanical properties of heavy concrete] (2010).
Google Scholar
[6]
Electronic directory of a builder [web source] (20. 12. 2013). URL: http: /www. bibliotekar. ru/spravochnik-70/26 (date of reference: 18. 09. 2014). (rus).
Google Scholar
[7]
Vasilik, P.G., Golubev, I.V. Publication of electronic resource of company ZAO EuroChem- 1,. Features of the application of polycarboxylate hyperplasticizer Melfluxâ [web source] (16. 02. 2014). URL: http: /www. chem. eurohim. ru/catalog/DryMortarAdditives/articles/art52 (date of reference: 15. 09. 2014). (rus).
Google Scholar
[8]
Barabanshchikov, Yu.G., Komarinskiy, M.V. Influence of superplasticizer S-3 on the technological properties of concrete mixtures (2014) Advanced Materials Research, 941–944, pp.780-785.
DOI: 10.4028/www.scientific.net/amr.941-944.780
Google Scholar
[9]
Kiski, S.S., Ageyev, I.V., Ponomarev A.N., Kozeyev A.A., Yudovich, M.E. Issledovaniye vozmozhnosti modifikatsii karboksilatnykh plastifikatorov v sostave modifitsirovannykh melkozernistykh betonnykh smesey [Study the possibility of modifying carboxylate plasticizers in the composition of the modified concrete mixtures] (2012).
Google Scholar
[10]
Ta Van Fan Samouplotnyayushchiyesya vysokoprochnyye betony s zoloy risovoy shelukhi i metakaolinom [Self-sealing high-strength concrete with rice husk ash and metakaolin] (2013) Abstract Ph.D., Rostov-na-Donu, p.23. (rus).
Google Scholar
[11]
Bleshchik, N.P., Kalinovskaya, N.N., Tekhnologiya i svoystva betona, modifitsirovannogo giperplastifikatorom [Technology and properties of concrete modified by hyperplasticizer] (2007).
Google Scholar
[12]
Bleshchik, N.P., Kalinovskaya, N.N. Modifikatory betona novogo pokoleniya [Modifiers of new generation concrete] (2006) Construction Science and Technology, No. 1, pp.30-40.
Google Scholar
[13]
Kalashnikov, V.I., Tarakanov, O.V., Kuznetsov, Yu.S., Volodin, V.M., Belyakova, Ye.A. Betony novogo pokoleniya na osnove sukhikh tonkozernisto-poroshkovykh smesey [Concretes of a new generation on the basis of fine-grained dry-powder mixtures] (2012).
Google Scholar
[14]
Zhang, X., Yang, S., Diao, B., Zhang, Q., Li, Y. Influence of silica fume and superplasticizer on compressive strength and flow diameter of high performance concrete (2009) Journal of Building Structures, 30 (2), pp.324-327.
Google Scholar
[15]
Sprince, A., Fischer, G., Pakrastinsh, L., Korjakins, A. Crack propagation in concrete with silica particles (2012) Advanced Materials Research, Vol. 842, pp.470-476.
DOI: 10.4028/www.scientific.net/amr.842.470
Google Scholar
[16]
Distanov, U.G. Mineralnoye syrye. Opal-kristobalitovyye porody: spravochnik [Mineral raw materials. Opal-cristobalite rocks: Directories] (1998) M. ZAO Geoinformmark, 27 p. (rus).
Google Scholar
[17]
Nesvetayev, G.V., Kardumyan, G.S., Ta Van Fan, Khomich, L.A., Blyagoz, A.M., Kontraktsiya portlandtsementra v prisutstvii superplastifikatorov i mineralnykh dobavok [Portland construction with the presence of superplasticizers and mineral additives] (2012).
Google Scholar
[18]
Nesvetayev, G.V., Kardumyan, G.S., Ta Van Fan, Khomich L.A., Blyagoz A.M. The effect of superplasticizers and mineral supplements on the porosity of the cement paste (2012) Novyye tekhnologii, No. 4, pp.122-125.
Google Scholar
[19]
Nesvetayev, G.V., Kardumyan, G.S., Ta Van Fan, Khomich, L.A., Blyagoz, A.M. O vliyanii superplastifikatorov i mineralnykh dobavok na velichinu nachalnogo modulya uprugosti tsementnogo kamnya i betona [About the effect of superplasticizers and mineral supplements on the amount of the initial modulus of elasticity of cement paste and concrete] (2012).
Google Scholar
[20]
Morozov, N.M., Muginov, Kh.G., Khozin, V.G., Antakov, A.B. Vysokoprochnyye peschanyye betony dlya monolitnogo stroitelstva [High-strength concrete sand for monolithic construction] (2012) Kazan, Izvestiya KGASU, No. 2 (20), pp.183-188. (rus).
Google Scholar
[21]
Veshnyakova, L.A., Ayzenshtadt, A.M. Modeling of concrete based on thermodynamic criteria of surface components (2013).
Google Scholar
[22]
Publication of the electronic version of the journal StroyPROFIl, [web source] (05. 06. 2007). URL: http: /stroyprofile. com/archive/2652 (date of reference: 20. 09. 2014). (rus).
Google Scholar
[23]
Matveyeva, Ye.G. Povysheniye effektivnosti betona dobavkoy nanodispersnogo kremnezema [Improving the efficiency of concrete additive nanosized silica] (2011) Belgorod, Abstract Ph.D., 22 p. (rus).
Google Scholar
[24]
Barabanshchikov, Yu.G., Churillo, A.V. Heat dissipation binders. Methodical instructions (1988) A .: LPI, 29 p.
Google Scholar
[25]
Chumadova, L.I., et al. Posobiye po teplovoy obrabotke sbornykh zhelezobetonnykh konstruktsiy i izdeliy. (podgotovka k SNiP 3. 09. 01-89) [Manual on heat treatment of precast concrete structures and products. (preparation for SNIP 3. 09. 01-89)] (1989).
Google Scholar
[26]
Zaporozhets, I.D., Pariyskiy, A.A., Okorokov, S.D., Chumadova, L.I. K voprosu o temperaturnoy funktsii teplovydeleniya betona [The question of the temperature function of heat release of concrete] (1977).
Google Scholar
[27]
Vasilyev, A.S., Barabanshchikov, Yu.G. Effektivnost dobavok-uskoriteley skhvatyvaniya i tverdeniya dlya torket-betona [The effectiveness of additives - setting and hardening accelerator for torket-concrete] (2012).
Google Scholar