[1]
G.E. Stefan, M.A. Goncharova, A.D. Korneev et al., The determination of optimum compositions of refractory slag-concretes via design of experiment, Refractories and Technical Ceramics 1 (2005) 34-39.
Google Scholar
[2]
M.A. Goncharova, Design and selection of optimum compositions of refractory slag-concretes, Construction Materials 10 (2007) 10-12.
Google Scholar
[3]
M.A. Goncharova, The application of nanotechnological principles in obtaining slag construction composites, in: Construction and Architecture. Vestnik of Voronezh State University of Architecture and Construction, 11 (2008) 61-67.
Google Scholar
[4]
S.P. Kopsha, V.A. Zaikin, Technology of horizontal slip forming is the key to the industry modernization and lower cost of housing, Technology of concrete, 11 (2013) 29-33.
Google Scholar
[5]
S.V. Nikolaev Architectural and urban system of panel-frame housing construction, Housing construction, 3 (2016) 15-25.
Google Scholar
[6]
S.V. Bosakov, V.N. Belevich, N.S. Shchetko, V.P. Raichev, Calculation and experimental evaluation of strength of hollow-core slabs of horizontal slip forming concerning the requirements of EN, Construction science and technology, 6 (2010) 47-54.
Google Scholar
[7]
V.I. Voronov, V.V. Mikhailov, S.I. Roshchina, The Results of tests of hollow-core prestressed slabs of horizontal slip forming, Scientific-technical Bulletin of the Volga region, 5 (2011) 89-92.
Google Scholar
[8]
N.I. Klyueva, S.I. Gornostayev, To the question of the calculation model to estimate the strength of reinforced concrete constructions, News of Southwest State University, 1(64) (2016) 71-74.
Google Scholar
[9]
V.P. Selyaev, V.N. Utkina, Reinforced concrete structures manufactured by a horizontal slip forming method: the assessment of the reliability, experience of application, Technology of concrete 5-6 (2011) 45-47.
Google Scholar
[10]
M.A. Goncharova, A.N. Ivashkin, O.A. Kashirskaya, Assessment of the quality of the surface of the multicomponent decorative concretes articles, Housing construction, 12 (2014) 19-22.
Google Scholar
[11]
M.A. Goncharova, A.N. Ivashkin, V.V. Simbaev, Development of optimal compositions of silicate concrete with the use of local raw materials, Construction materials, 9 (2016) 6-8.
Google Scholar
[12]
E.I. Yumashev, L.V. Sapacheva, House-building industry and the social demand of the time, Construction materials, 10 (2014) 3-11.
Google Scholar
[13]
M.G. Bruyako, L.S. Grigoryeva, D.V. Kravtsova, Variable density cellular concrete, Advanced materials research, T 860-863 (2014) 1323-1326.
DOI: 10.4028/www.scientific.net/amr.860-863.1323
Google Scholar
[14]
Goncharova, Curing Systems and Construction Composites Based on Converter Slags, VGASU, Voronezh, (2012).
Google Scholar
[15]
M.A. Goncharova, B.А. Bondarev, A.D. Korneev, Construction Composites Based on Slag Waste, Lipetsk State Technical University, Lipetsk, (2002).
Google Scholar
[16]
M.A. Goncharova, A.V. Komarichev, O.V. Karaseva, S.V. Maklakov, Optimizing the composition of magnetic polymer sealing composites with the application of slag ferromagnetic filler, J. Chemical Technology and Metallurgy, 52 (2017) 636-641.
Google Scholar
[17]
J. Walraven, Concrete for a new century, Proceedings of the 1st fib congress. (2006) 11-22.
Google Scholar
[18]
E. Setyowati, Eco-Building Material of Styrofoam Waste and Sugar Industry Fly-ash Based on Nano-Technology, in: Proceeding of Conference: 4th International Conference on Sustainable Future for Human Security (SUSTAIN) 2013. 20 (2014) 245-253.
DOI: 10.1016/j.proenv.2014.03.031
Google Scholar
[19]
J. Lee, Sh. Mahendra, P.J.J. Alvarez, Nanomaterials in the Construction Industry, A Review of Their Applications and Environmental Health and Safety Considerations, ACS NANO. 7 (2010) 3580-3590.
DOI: 10.1021/nn100866w
Google Scholar
[20]
A.V. Komarichev, M.А. Goncharova, A.S. Bocharnikov, I.O. Sayakhova, Methods of estimating magnetic susceptibility of cement injection mixtures, in: Scientific Bulletin of Voronezh State Architecture and Construction University. Series: Physical and Chemical Problems and High Technologies of Construction Material Studies, 6 (2015).
Google Scholar