[1]
Surianinov M., Andronov V., Otrosh Y., Makovkina T. and Vasiukov S. (2020). Concrete and Fiber Concrete Impact Strength. In Materials Science Forum. Trans Tech Publications Ltd. Volume 1006 - pp.101-106.
DOI: 10.4028/www.scientific.net/msf.1006.101
Google Scholar
[2]
T. Nikiforova, O. Gukasian, N. Mahas, Choice recommendations for rational concreting technology of steel reinforced concrete structures. International Journal of Engineering and Technology(UAE), 7(3), (2018), 275–279
DOI: 10.14419/ijet.v7i3.2.14419
Google Scholar
[3]
P. Semko, S. Skliarenko, V. Semko, Concrete filled tubular elements joints investigation. International Journal of Engineering and Technology(UAE). 7(3) (2018) 494–500
DOI: 10.14419/ijet.v7i3.2.14578
Google Scholar
[4]
Y.H. Bubnov, Stroytelnaia mekhanyka [Structural mechanics], V 2-kh chastiakh, Sankt-Peterburh, (1912–1914) [in Russian].
Google Scholar
[5]
P.F. Papkovych, Stroytelnaia mekhanyka korablia (T.2) Slozhnyi yzghyb y ustoichyvost sterzhnei, Yzghyb y ustoichyvost plastyn [Ship building mechanics], [Complex bending and stability of the rods, Bending and stability of plates], L.: Sudpromhyz, (1941) [in Russian].
Google Scholar
[6]
V.A. Postnov, D.M. Rostovtsev, V.P. Suslov, & Yu.P. Kochanov, Stroytelnaia mekhanyka korablia y teoryia upruhosty. Ucheb. dlia vuzov. (T. 2). Yzghyb y ustoichyvost sterzhnei, sterzhnevykh system, plastyn y obolochek. [Structural mechanics of a ship and the theory of elasticity], [Bending and stability of rods, rod systems, plates and shells], L.: Sudostroenye (1987) [in Russian].
Google Scholar
[7]
S.V. Symeonov, Obshchaia teoryia rascheta sudovykh perekrytyi [General theory of calculation of ship overlaps], Trudy LKY. L. 26 (1959) [in Russian].
Google Scholar
[8]
S.V. Symeonov, Tekhnycheska teoryia na sъstavenyte stroytelny konstruktsyy [Technical theory on the construction of construction], Stroytelstvo, 6(7) (1959) [in Bulgarian].
Google Scholar
[9]
Kovalov, A., Otrosh, Y., Surianinov, M., Kovalevska, T. Experimental and Computer Researches of Ferroconcrete Floor Slabs at High-Temperature Influences. Trans Tech Publications Ltd. In Materials Science Forum, 2019, Vol. 968, pp.361-367.
DOI: 10.4028/www.scientific.net/msf.968.361
Google Scholar
[10]
V. Semko, M. Leshchenko, O. Cherednikova, Standardization of required level probability of no-failure operation of the building envelopes by the criterion of total thermal resistance. International Journal of Engineering and Technology(UAE). 7(3) (2018) 382–387
DOI: 10.14419/ijet.v7i3.2.14557
Google Scholar
[11]
M.Yu. Prokurov, Raschet perekrestnykh balochnykh system v avtomatyzyrovannom rezhyme [Calculation of cross beam systems in an automated mode], Vestnyk Brianskoho hosudarstvennoho tekhnycheskoho unyversyteta, 1(27) (2011) [in Russian].
Google Scholar
[12]
A.V. Turkov, V.Y., Korobko, A.A. Makarov, Eksperymentalnye yssledovanyia system perekrestnykh balok iz dereviannykh elementov na kvadratnom plane pry yzmenenyy dynamycheskykh y statycheskykh nahruzok [Experimental studies of systems of cross beams from wooden elements on a square plan with changes in dynamic and static loads], Lesn. zhurn., 5 (2017) 119–126. DOI: 10.17238/issn0536-1036.2017.5.119 [in Russian].
DOI: 10.17238/issn0536-1036.2017.5.119
Google Scholar
[13]
S.V. Bosakov, O.V. Kozunova, Raschet systemy perekrestnykh balok na vynklerovskom osnovanyy metodom peremeshchenyi s prymenenyem prykladnoho paketa "MATHEMATICA" [Calculation of a system of cross beams on a Winkler base by the displacement method using the application package "MATHEMATICА"], Brest: BrHTU, (2019) 16–22. [in Russian].
Google Scholar
[14]
Y.Y. Horodnov, A.Y. Sheyn, V.A. Monakhov, Obzor rabot po optymalnomu y ratsyonalnomu konstruyrovanyiu kompozytnykh balochnykh system [Review of works on optimal and rational design of composite beam systems], Rehyonalnaia arkhytektura y stroytelstvo, 1(46) (2021) 109–121 [in Russian].
Google Scholar
[15]
Yu.D. Zemenkova, (Eds.) Uchebnoe posobye: Metodolohycheskye osnovy nauchnykh yssledovanyi [Study guide: Methodological foundations of scientific research], Tiumen: Yzdatelstvo «Vektor Buk», (2004) [in Russian].
Google Scholar
[16]
Y.M. Hrushko, V.M. Sydorenko, Osnovy nauchnykh yssledovanyi [Fundamentals of scientific research], Kharkov: Vysshaia shkola, (1983) [in Russian].
Google Scholar
[17]
BS EN 14889-1:2006. Fibres for concrete. Steel fibres. Definitions ad specifications and conformity. BSI, (2006).
DOI: 10.3403/30110332
Google Scholar
[18]
D.V. Lazareva, M.M. Soroka, O.S. Shilyaev, Priyomi roboti z PK ANSYS pri rozvyazanni zadach mekhaniki [Techniques for working with the Ansys PC when solving mechanics problems]? Pіd redaktsіeyu M.N, Surianіnova: monografiya? Odesa: ODABA, (2020) [in Ukranian].
Google Scholar