Promising compositions of polymer-cement materials for concrete production
https://doi.org/10.21822/2073-6185-2026-53-2-223-228
Abstract
Objective. Polymer cement concrete holds promise for construction in the Far North, as it improves the durability and reliability of structures in extreme climates. The relevance of the problem of selecting repair mortars in construction is due to the deterioration of concrete structures. This article examines polymer cement concrete as a new class of building materials.
Method. The study is based on the theory of strength formation and failure of composite building materials.
Result. Polymer cement concrete is a composite in which the concrete base is modified with a polymer matrix. Experiments have shown that high-strength polymer cement composite significantly exceeds conventional cement stone in compressive strength (1.75 times at a water/cement ratio of 0.4). Practical application of this material requires optimization of curing conditions and, possibly, the use of accelerators.
Conclusion. The use of polymer cement concrete for repair and restoration work can significantly increase the service life of structures and optimize construction processes. Its distinctive features are high strength, excellent corrosion resistance, resistance to aggressive environments and high adhesion to concrete surfaces.
About the Authors
M. E. SavvinovaRussian Federation
Maria E. Savvinova, Senior Researcher, Cand. Sci. (Eng.), Laboratory of Composite Building Materials
20 Nikolaev Ave., Yakutsk 677000
V. K. Kulakovsky
Russian Federation
Vladimir K. Kulakovsky, Laboratory Research Assistant, Second-year Postgraduate Student, Laboratory of Composite Building Materials
20 Nikolaev Ave., Yakutsk 677000
References
1. Ignatiev A.V., Ignatiev V.A., Bochkov M.I. Calculation of multi-span beams with unilateral braces using FEM in the form of a classical mixed method. Bulletin of the Volgograd State University of Architecture and Civil Engineering. 2017;48 (67): 94–109 (In Russ)
2. Khozin V.G., Morozov N.M., Muginov H.G. Features of the formation of the structure of modified sand concrete. Construction Materials. 2010; 9: 72–77 (In Russ)
3. Nesvetaev G.V., Osipov V.V. Influence of redispersible polymer powders and curing conditions on the shrinkage of building mortars. Engineering Bulletin of the Don. 2023;11 (107): 581-597 (In Russ)
4. Bataeva P.D. Review of compositions and technologies for the repair and restoration of cultural heritage sites. Bulletin of the Kh.I. Ibragimov Integrated Research Institute of the Russian Academy of Sciences. 2021;5:49-53. (In Russ)
5. Guseva T.V., Potapova E.N., Tikhonova I.O. Transition to standardization based on the principles of best available technologies: prospects and challenges for cement production enterprises. Cement and its application. 2018; 6:34–38. (In Russ)
6. Korobova O.S., Tkacheva A.S. Prospects for the implementation of the best available technologies in cement production. Mining information and analytical bulletin. 2016;11:90–95. (In Russ)
7. Shangina N.N., Safonova T.Yu. Effect of mineral additives on shrinkage deformations of lime mortar stone. Bulletin of civil engineers. 2021;2(85):42–149. DOI: 10.23968/1999-5571-2021-18-2-142- 149. (In Russ)
8. Shangin V.Yu. Improving the crack resistance of thin-layer cement coatings. Construction materials. 2006; 2:58–59. (In Russ)
9. Makushina Yu.V., Shmitko E.I., Belkova N.A. Ways to optimize the quality of cement concrete in terms of moisture shrinkage. Chemistry, Physics and Mechanics of Materials. 2020; 4 (27): 50-65. (In Russ)
10. Potapova E.N., Guseva T.V., Tikhonova I.O., Averochkin E.M. Best Available Technologies as a Driving Force for Ecological and Technological Modernization of Cement Production. Cement and Its Application. 2022; 6: 40–43. (In Russ)
11. Skorokhod A.M. Implementation of Best Available Technologies in Cement Production. Economics and Entrepreneurship. 2023;7 (156):1124–1126. (In Russ)
12. Mobarak Mashrafi Bin, Md. Hossain Sahadat, Mahmud Monika, Ahmed Samina. Redispersible polymer powder modified cementitious tile adhesive as an alternative to ordinary cement-sand grout. Heliyon. 2021; 7:1-9. DOI: 10.1016/j.helion.2021.e08411
13. Wang R., Wang P.-M. Action of redispersible vinyl acetate and versatate copolymer powder in cement mortar. Construct. Build. Mater. 2011; 25 (11):4210-421.
14. Kashibadze N.V., Zagorodnyuk L.Kh., Strekozova M.A. Development and optimization of properties of dry building mixtures for self-leveling floors using slags. Bulletin of the Belgorod State Technological University named after V.G. Shukhov. 2009;3:89-94. (In Russ)
15. Fayzrakhmanov I.I., Khaliullin M.I., Leklu A.N., Amiri O. Influence of finely dispersed concrete screenings on deformations and crack resistance of building mortars. Bulletin of the Kazan State University of Architecture and Civil Engineering. 2017;2(40):241-248 (In Russ)
Review
For citations:
Savvinova M.E., Kulakovsky V.K. Promising compositions of polymer-cement materials for concrete production. Herald of Dagestan State Technical University. Technical Sciences. 2026;53(2):223-228. (In Russ.) https://doi.org/10.21822/2073-6185-2026-53-2-223-228
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