[1]
E. A. Antropova, B. A. Drobyshevskiy, B. F. Byalik, V. N. Mazur, A method for preparing a modified steel fiber reinforced mixture and modified steel fiber reinforced concrete mixture, Invention Patent No. 2214986, publ. 27.10.(2003).
Google Scholar
[2]
V. A. Perfilov, A. V. Atkina, O. A. Kusmartseva, Fiber reinforced concrete with superfine fiber fillers, Int. Sci. and Prac. Conf. Low-rise construction" in the framework of the project "Affordable and comfortable housing for Russian citizens: technology and materials, the problems and prospects of the development in the Volgograd region,, Volgograd, VolgGASU. (2009) 89- 91.
Google Scholar
[3]
V. A. Perfilov, A. V. Kotlyarevskaya, Use of fiber additives and superplasticizing agents for improvement of foam concrete strength, Safety and reliability of cosntruction materials, structures and foundation basements: 6th Int. conf. Volgograd, VolgGASU. (2011) 251-252.
Google Scholar
[4]
V. A. Perfilov, A. V. Kotlyarevskaya, O. A. Kusmartzeva, Raw material for the use of cellular materials and the method for its manufacturing, Invention patent No. 2422408, Bull. No. 18 dd. 27.06.(2011).
Google Scholar
[5]
V. A. Perfilov, M. O. Zubova, D. L. Neizvestniy, Application of basalt fibers and a modifying additive for increasing the strength characteristics of heavy concrete, Proc. of the high. educ. instit., Construction No. 12, Novosibirsk. (2011) 46-49.
Google Scholar
[6]
А. Bentur, S. Mindess Fiber reinforced cementitious composites, Elsevier Applied Sience. London & New York, (1990).
Google Scholar
[7]
D. J. Hannant, Fibre cement and concrete, Dep. Civil. Eng., University Surrey, N. Y., (1978).
Google Scholar
[8]
V. A. Perfilov, S. P. Mityaev, Calculation of fiber-reinforced concrete with a nano-additive, Inventor's Certificate of state reg. of software No. 2009612195 dd. 29.04.(2009).
Google Scholar
[9]
V. A. Perfilov, U. V. Alatortseva, A. A. Tyurin, Fiber reinforced concrete mixture, Invention Patent No. 2008133782/03, publ. 20.04.(2010).
Google Scholar
[10]
V. A. Perfilov, M. O. Zubov, Basalt fiber as the main component of dispersed-fiber reinforcing concrete, Bull. of Donbas Nat. Acad. of Constr. and Arch. 3 (101) (2013) 146-148.
Google Scholar
[11]
V. A. Perfilov, Fine-grained fiber reinforced concretes. Thesis. Ministry of Education and Science of the Russian Federation. Volgograd State University of Architecture and Civil Engineering, Volgograd, VolgGASU, (2015).
Google Scholar
[12]
V. A. Perfilov, M. O. Zubova, Effect of basalt fibers on the strength of fine fiber reinforced concrete, Internet Bull. of VolgGASU, Series: Multidisciplinary. 1 (37) (2015) 9.
Google Scholar
[13]
V. A. Perfilov, M. O. Zubova, Effect of superplasticizers on the properties of fiber-reinforced concrete, Internet Bull. of VolgGASU, Series: Multidisciplinary. 1 (37) (2015) 11.
Google Scholar
[14]
V. A. Perfilov, D. V. Oreshkin, D. Y. Zemlyanushnov, Concrete strength and crack resistance control, in: Procedia Engineering 2. Ser. 2nd Int. Conf. on Ind. Eng. ICIE 2016,. (2016) 1474-1478.
DOI: 10.1016/j.proeng.2016.07.085
Google Scholar
[15]
V .A. Perfilov, V. V. Gabova, Nanomodified constructional fiber-reinforced concrete [Electronic resource], MATEC Web of Conferences, 129, Int. Conf. on Modern Trends in Manufacturing Techn. and Equip. (ICMTMTE 2017) (Sevastopol, Russia, September 11-15, 2017) / eds.: S. Bratan [et al.]; Sevastopol State University, National University of Science and Technology MISIS,, Polzunov Altai State Technical University, Inlink Ltd. and International Union of Machine Builders. - [Publisher: EDP Sciences], (2017).
DOI: 10.1051/matecconf/201712905021
Google Scholar
[16]
V. A. Perfilov, M. O. Zubova, Fine-grained basalt fiber reinforvced concrete, Bull. of the Volgograd St. Univ. of Archit. and Civil Eng. Series: Construction and architecture. 38 (2014) 85-93.
Google Scholar
[17]
V. A. Perfilov, A. V. Atkina, O. A. Kusmartseva, U. V. Kanavets, Fiber reinforced concrete with macro strengthening and nano additives, in: Socio-economic and technological challenges of the construction complex of the region. Science. Practice. Education. Proceedings of the III All-Russian scientific and technical conference. Editorial team: S. Y. Kalashnikov, A. N. Bogomolov, T. K. Akchurin, T. A. Zabaznova, M. K. Belyaev, B. L. Navarotskiy, V. A. Babkin. (2009) 236-238.
Google Scholar
[18]
V. A. Perfilov, U. V. Alatortseva, M. I. Dmitruk, I. L. Zhoga, Application modifying nano-additives to improve strength fiber-reinforced concrete, Proc. of the high. educ. instit. Construction, Novosibirsk. 8 (2009) 17-19.
Google Scholar
[19]
V. A. Perfilov, U. V. Alatortseva, Structural fiber reinforced concretes with modifying nano-additives, Proc. of the Sec. Int. Nanotechn. Forum October 6-8, 2009, GK Rosnanotekh, Moscow, 2009, pp.374-375.
Google Scholar
[20]
V. I. Kovalevsky, G. P. Boykov, Methods for calculating the heat insulation screen. Energy,, Moscow, (1974).
Google Scholar
[21]
M. A. Mikheev, I. M. Mikheeva, Fundamentals of heat transfer,Energy, Moscow, 1973 p.
Google Scholar
[22]
V. A. Perfilov, V. I. Lepilov, Haydite blocks with high heat-shielding properties, Proc. of the high. educ. instit. North-Caucasian region. Ser.: Technical science. 6 (2008) 116-120.
Google Scholar
[23]
V. A. Perfilov, V. I. Lepilov, A. V. Kotlyarevskaya, Foam fiber reinforced concrete blocks with reduced thermal conductivity for fencing structures, Quality of indoor air and environment: 10th Int. Scientif. Conf., Volgograd: VolgGASU. (2012) 439-444.
Google Scholar