1. Yu.M. Bazhenov, Chernyshev E.M., Korotkih D.N. Konstruiro-vanie struktur sovremennyh betonov: opredelyayuschie princi-py i tehnologicheskie platformy // Stroitel'nye materialy. 2014. № 3. S. 6–14.
2. Tang J. et al. A Review on Multi-Scale Toughening and Regulat-ing Methods for Modern Concrete: From Toughening Theory to Practical Engineering Application // Research. 2024. Vol. 7. Pp. 0518. DOI:https://doi.org/10.34133/research.0518.
3. Yang W. et al. Effect of Glass Fiber on Flexural Performance of Gfrp-Rc Beams Under Sustained Loading and Alkaline Environ-ment: Experimental, Numerical and Analytical Investigations. 2024. DOI:https://doi.org/10.2139/ssrn.4712786.
4. Yuan H., Fan Y.C., You X.M., Fu B., Zou Q.Q. Pullout behavior of recycled macro fibers in the cementitious matrix: Analytical model and experimental validation // Composite Structures. 2024. Vol. 328. Pp. 117690. DOI:https://doi.org/10.1016/j.compstruct.2023.117690.
5. Hoffman I.S., Piva J.H., Wanderlind A., Antunes E.G.P. Rein-forced concrete beams coated with fiberglass-reinforced polymer-ic profiles as partial substitutes for the transverse reinforcement // Rev. IBRACON Estrut. Mater. 2020. Vol. 13, № 6. Pp. e13608. DOI:https://doi.org/10.1590/s1983-41952020000600008.
6. Barbhuiya S., Das B.B., Kanavaris F. A review of fracture prop-agation in concrete: fundamentals, experimental techniques, modelling and applications // Magazine of Concrete Research. 2024. Vol. 76, № 10. Pp. 482–514. DOI:https://doi.org/10.1680/jmacr.23.00143.
7. Sizyakov I.D., Veselov V.K. Vliyanie stekloplastikovoy fib-ry na svoystva betonnyh smesey // Tradicii i innovacii v stroitel'stve i arhitekture. Samara, 2024. S. 810–816.
8. Sizyakov I.D. Treschinostoykost' betona so stekloplastiko-voy i stal'noy fibroy // Inzhenernyy vestnik Dona. 2024. T. 5, № 113. S. 379–387.
9. Solov'ev V.G., Sizyakov I.D. Fiziko-mehanicheskie svoystva betonov so stekloplastikovoy fibroy // Sbornik materialov III Vserossiyskoy nauchnoy konferencii, posvyaschennoy devya-nostoletiyu kafedry Stroitel'nogo materialovedeniya. Moskva: Nacional'nyy issledovatel'skiy Moskovskiy gosu-darstvennyy stroitel'nyy universitet, 2023. S. 278–283.
10. Hozin V.G., Gizdatullin A.R. Sovmestimost' polimerkom-pozitnoy armatury s cementnym betonom v konstrukciyah // Stroitel'nye materialy. 2017. № 11. S. 30–38.
11. Başsürücü M., Fenerli̇ C., Kina C., Akbaş Ş.D. Effect of Fiber Type, Shape and Volume Fraction on Mechanical and Flexural Properties of Concrete // Journal of Sustainable Construction Materials and Technologies. 2022. Vol. 7, № 3. Pp. 158–171. DOI:https://doi.org/10.47481/jscmt.1137088.
12. Abd Elmoaty A.E.M., Morsy A.M., Harraz A.B. Effect of Fiber Type and Volume Fraction on Fiber Reinforced Concrete and Engineered Cementitious Composite Mechanical Properties // Buildings. 2022. Vol. 12, № 12. Pp. 2108. DOI:https://doi.org/10.3390/buildings12122108.
13. Aleksandrova O.V., Maceevich T.A., Kir'yanova L.V., Solov'-ev V.G. Statisticheskie metody resheniya tehnologicheskih za-dach: uchebnoe posobie. Moskva: NIU MGSU, 2017. 154 s.
14. Zadorozhnaya E.A. Teoriya planirovaniya eksperimenta. Che-lyabinsk: Izdatel'skiy centr YuUrGU, 2018. 92 s.
15. Dvorkin L.I., Koval'chuk T.V. Proektirovanie sostavov fibrobetona s ispol'zovaniem eksperimental'no-statisticheskih modeley // Tehnologii betonov. 2016. № 11–12. S. 29–35.



