1. Kamenskikh, A.N., Valiev, Sh.N., Petrovich, I.G. & Zhuravlev, P.A. (2022) Polimernye napylyaemye materialy dlya ustroyistva gidroizolyatsii mostovyh sooruzhenij [Polymeric sprayed materials for waterproofing of bridge structures]. Moscow: Stroinformizdat (in Russian).
2. Ovchinnikov, I.I., Ovchinnikov, I.G., Valiev, Sh.N. & Zhadenova, S.V. (2013) Systematization and comparative analysis of various types of waterproofing used on road bridge structures, Internet-zhurn. «Naukovedenie», (5) [online]. Available at: https://naukovedenie.ru/PDF/56tvn513 (in Russian).
3. Ovchinnikov, I.G., Kochetkov, A.V., Makarov, V.N. & Ovsyannikov, S.V. (2008) Novye materialy i izdeliya v mostostroenii [New materials and products in bridge construction]. Moscow: INFORMAVTODOR (in Russian).
4. Yankovsky, L.V., Kochetkov, A.V. & Trofimenko, Yu.A. (2015) Methodology of material selection for the device of rough layers of road pavement, Nauch. vestnik Voronezh. GASU. Ser.: Stroitel'stvo i arkhitektura [Scientific Bulletin of Voronezh. VSUACE. Ser.: Construction and Architecture], 1(37), pp. 99-111 (in Russian).
5. Yankovsky, L.V., Kokodeeva, N.E., Trofimenko, Yu.A., Valiev, Sh.N. & Shashkov, I.G. (2015) The use of a digital microscope when monitoring macro-roughness of pavements of pedesrian bridge structures, Stroitel'nye materialy [Construction materials], (10), pp. 75-79 (in Russian).
6. Ovchinnikov, I.G., Makarov, V.N., Ilyushkin, V.A., Ovchinnikov, I.I. & Ovsyannikov, S.V. (2008) Innovatsionnye tekhnologii ustroystva mostovogo polotna na sovremennyh mostovyh sooruzheniyakh [Innovative technologies of bridge deck construction on modern bridge structures]. Rata, Saratov (in Russian).
7. Korneev, A.D., Borkov, P.V., Bondarev, A.B. & Prozorova, L.A. (2011) Forecasting of cyclic durability polymerconcrete in elements of designs of transport constructions, Vestnik Volgograd. gos. arkh.-stroyit. un-ta. Ser.: Stroitel'stvo i arkhitectura [Bulletin of Volgograd State University of Architecture and Civil Engineering. Ser.: Construction and Architecture], 21(40), pp. 72-77 (in Russian).
8. Bondarev, B.A., Borkov, P.V., Komarov, P.V. & Bondarev A.B. (2012) Experimental studies of cyclic durability of polymer composite materials, Sovremennye problemy nauki i obrazovaniya [Modern problems of science and education], (6), p. 136 (in Russian).
9. Arzhanukhina, S.P., Garibov, R.B., Kochetkov, A.V., Yankovsky, L.V. & Glukhov, T.A. et al. (2013) Selection of demands on de-icing agents for metropolis roads, Voda: khimiya i ekologiya [Water: Chemistry and Ecology], 4(58), pp. 106-115 (in Russian).
10. Di, Yu, Wensheng, W., Yongchun, Ch. & Yafeng, G. (2016) Laboratory investigation on the properties of asphalt mixtures modified with double-adding admixtures and sensitivity analysis, Journ. Traffic and Transport. Eng. (English Edition), 3(5), pp 412-426. DOI:https://doi.org/10.1016/j.jtte.2016.09.002.
11. Yongchun, Cheng, Di, Yu , Guojin, Tan & Chunfeng, Zhu (2018). Low-Temperature Performance and Damage Constitutive Model of Eco-Friendly Basalt Fiber-Diatomite-Modified Asphalt Mixture under Freeze-Thaw Cycles Materials. DOI:https://doi.org/10.3390/ma11112148.
12. Celauro, C. & Praticò F. (2018) Asphalt mixtures modified with basalt fibres for surface courses, Construction and Building Materials, 170, pp 245-253. DOI:https://doi.org/10.1016/j.conbuildmat.2018.03.058
13. Yafeng, G., Haipeng, Bi & Chunyu, L. Shurong Wang (2018) Microstructure Analysis of Modified Asphalt Mixtures under Freeze-Thaw Cycles Based on CT Scanning Technology, Appl. Sci., 8(11), p. 2191. DOI:https://doi.org/10.3390/app8112191.
14. Xiao, Q., Aiqin, Sh., Yinchuan, G. & Zhennan, Li. (2018) Characterization of asphalt mastics reinforced with basalt fibers, Construction and Building Materials, 159, pp 508-516. DOI:https://doi.org/10.1016/j.conbuildmat.2017.11.012.
15. Yafeng, G., Haipeng, Bi, Zhenhong, T. & Guojin, T. (2018) Pavement Performance Investigation of Nano-TiO2/CaCO3 and Basalt Fiber Composite Modified Asphalt Mixture under Freeze‒Thaw Cycles, Appl. Sci., 8(12), p. 2581. DOI:https://doi.org/10.3390/app8122581.
16. Bondarev, B.A., Borkov, P.V. & Bondarev, A.B. (2016) An Outlook on the Application of Glass-Reinforced Plastic and Polymer Concrete Components in Bridge Construction. 2nd International Conference on Industrial Engineering (ICIE-2016), Chelyabinsk, Elsevier Ltd, pp. 1617-1622. DOIhttps://doi.org/10.1016/j.proeng.2016.07.139.
17. Kaldas, Eestindanud Aleksander (2013) Sillatekkide asfaltkatendid (Asphalt pavements on bridge decks). EAPA arvamusraport.
18. Holter, Karl Gunnar (2015) Testing of properties and constructability considerations of EVA-based sprayed membranes for waterproofing of tunnels. «SEE Tunnel: Promoting Tunneling in SEE Regio» ITA WTC 2015 Congress and 41st General Assembly.



