[1]
A. S. Semchenkov, V. Z. Meshkov, A. A. Kvasnikov, A. A. Belousov, E. S. Savkin, Characteristics of Concrete Bonding with Core Fittings of Different Profiles. Expertise. 8 (2008) 58-62.
Google Scholar
[2]
V. V. Svistunov, A. K. Lomunov, Fundamentals of Reinforced Concrete Resistance. A course of lectures on the subject Reinforced Concrete and Stone Structures,: teaching medium, Nizhny Novgorod, (2012).
Google Scholar
[3]
S. G. Golovnev, S. B. Smith, M. V. Fellows, Adhesion of the Concrete within a Construction Joint, Proceedings of SUSU. 13(2005) 71-74.
Google Scholar
[4]
V. N. Morgun, L. V. Morgun, A. V. Visnap, The Use of Reinforcing Rod in the Products of Fiber Foam Concrete, Construction materials. 7 (2015) 52-54.
Google Scholar
[5]
I. N. Zhmyhov, E. A. Rogova, The History of the Development of Chemical Fibers: Past, Present, and Future. To the 80th anniversary of chemical fibers in Belarus, MGUP, Mogilev, (2010).
Google Scholar
[6]
V. Kustikova, Stress-strain State of Adhesion of Basalt-plastic Reinforcement with Concrete. Thesis for a Candidate Degree in Technological Sciences. Moscow, (2015).
Google Scholar
[7]
V. G. Khozin, A. A. Piskunov, A. R. Gizdatullin, A. N. Kuklin, The Overview of the Experiments to Define the Cohesion of Polymer Composite Reinforcement with Cement Concrete, Engineering Constructions. 1 (2013) 40-44.
Google Scholar
[8]
Eugenijus Gudonis, Rimantas Kačianauskas, André Weber, Gintaris Kaklauskas. Mechanical Properties of Fiberglass Reinforcement with Concrete Cohesion Bond, Mechanics of composite materials. 4 (2014) 641 - 654.
Google Scholar
[9]
Md Azree Othuman My din, Sara Soleimanzadeh, Effect of Polypropylene Fiber Content on Flexural Strength of Lightweight Foamed Concrete at Ambient andelevated Temperatures,, Advances in Applied Science Research Journal, Pelagia Research Library. 3 (2012).
Google Scholar
[10]
I. N. Korzenyuk, The study of mechanic electrical transformation of fiberglass-reinforced concrete, Master thesis, Tomsk, (2016).
Google Scholar