Published since 1923
DOI: 10.33622/0869-7019
Russian Science Citation Index (RSCI) на платформе Web of Science


  • BUILDING MATERIALS AND PRODUCTS
  • Features of the Development of Vibration Creep Deformations of Light, High-Strength And Heavy Concrete
  • UDC 691.32
    doi: 10.33622/0869-7019.2026.07.11-16
    Igor G. DZHAGARYAN, djagajon@gmail.com
    Russian University of Transport, ul. Obraztsova, 9, str. 9, Moscow 127994, Russian Federation
    Abstract. The features of the development of vibration creep deformations of light high-strength concrete, heavy high-strength concrete and heavy concrete of medium strength under cyclic compression are considered. Experimental studies have been carried out on prismatic samples under repeated loading. It has been established that after cyclic exposure, there is a decrease in the initial modulus of elasticity, the value of which depends on the type of concrete and its structure. The most stable deformation behavior was found in light high-strength concrete. It is shown that the modulus of elasticity is a more sensitive indicator of the degradation of the concrete structure compared with the strength characteristics. It is concluded that the development of vibration creep deformations is an informative criterion for assessing the durability of concrete under repeated loads. The practical significance of the study lies in the possibility of using the results obtained when choosing concretes for structures operating under cyclic loading conditions.
    Keywords: concrete vibration creep, cyclic loading, light high-strength concrete, heavy concrete, modulus of elasticity, prismatic strength
  • REFERENCES
    1. Ulickij I. I. Polzuchest' betona [Creep of concrete]. Kiev, L'vov, Gostekhizdat Ukrainy Publ., 1948. 136 p. (In Russ.).
    2. Bazant Z. P., Wittmann F. H. Creep and shrinkage in concrete structures. Chichester, John Wiley & Sons, 1982. 363 p.
    3. Mirsayapov I. T., Tamrazyan A. G. To calculate reinforced concrete structures for endurance. Promyshlennoe i grazhdanskoe stroitel'stvo, 2016, no. 11, pp. 19-23. (In Russ.). EDN: XACMVB
    4. Mirsayapov I. T., Garifullin D. R. Engineering methods for calculating deformations, modulus of elasticity and endurance limit of concrete under cyclic loading. Izvestiya KGASU, 2020, no. 3(53), pp. 15-26. (In Russ.). EDN: ONLRMU
    5. Kushnareva G. A., Pasku O. D. The effect of cyclic loads on the stress-strain state of reinforced concrete beams on limestone sand. Vestnik Odesskoy gosudarstvennoj akademii stroitel'stva i arhitektury, 2016, no. 63, pp. 74-78. (In Russ.).
    6. Karpenko N. I. Teoriya deformirovaniya zhelezobetona s treshchinami [Theory of deformation of reinforced concrete with cracks]. Moscow, Strojizdat Publ., 1976. 208 p. (In Russ.).
    7. Voprosy dinamiki i dinamicheskoj prochnosti. Sb. Statej [Questions of dynamics and dynamic strength. Collection of articles]. Riga, Akademii nauk Latviyskoy SSR Publ., 1953-1972. Available at: https://rusneb.ru/catalog/000199_000009_005580319/?ysclid=mqzi7tzkvp789967519 (accessed 29.03.2026). (In Russ.).
    8. Gaede K. Versuche ьber die Festigkeit und die Verformung von Beton bei Druck-Schwellbeanspruchung. Berlin, Ernst & Sohn, 1962. 48 S. (In Deutch).
    9. Paris P., Erdogan F. A critical analysis of crack propagation laws. Journal of Basic Engineering, 1963, vol. 85, pp. 528-534.
    10. Kern B., Podhajecky A. L., Lohaus L. et al. Deformation behaviour of concrete with different moisture contents subjected to compressive creep and cyclic loading. Materials and Structures, 2024, vol. 57, art. 131. doi: 10.1617/s11527-024-02399-7
    11. Wang Y., Pan Z., Zeng B., Xu Q. Cyclic creep model of concrete based on Kelvin chain under fatigue loads. Construction and Building Materials, 2024, vol. 417, art. 135255. doi: 10.1016/j.conbuildmat.2024.135255
    12. Kern B., Oneschkow N., Podhajecky A. L. et al. Comparative analysis of concrete behaviour under compressive creep and cyclic loading. International Journal of Fatigue, 2021, vol. 15, art. 106409. doi: 10.1016/j.ijfatigue.2021.106409
    13. Kaprielov S. S., Shejnfel'd A. V., Karpenko N. I. et al. Influence of the type of filler on the physical and technical characteristics of high-strength self-sealing cement systems. Beton i zhelezobeton, 2025, no. 2(627), pp. 27-42. (In Russ.). doi: 10.37538/0005-9889-2025-2(627)-27-42
  • For citation: Dzhagaryan I. G. Features of the Development of Vibration Creep Deformations of Light, High-Strength And Heavy Concrete. Promyshlennoye i grazhdanskoye stroitel'stvo [Industrial and Civil Engineering], 2026, no. 7, рp. 11-16. (In Russ.). doi: 10.33622/0869-7019.2026.07.11-16


BACK