Flexible Steel Concrete Beams with Thrust on Yielding Supports under Dynamic Load
https://doi.org/10.31675/1607-1859-2025-27-5-145-159
EDN: PVGYZJ
Abstract
Design and calculation of steel concrete beams on yielding supports under dynamic loading requires considering the development of the thrust reaction that can lead to a significant increase in the bearing capacity and crack resistance of beams with yielding supports, which reduce the intensity of dynamic loading.
Purpose: The aim of the work is to analyze the positive effectiveness of installing yielding supports in thrust conditionally flexible beams under intense dynamic loading.
Methodology: The strength analysis of steel concrete beams at conditionally elastic deformation with thrust on yielding supports under the dynamic load. Numerical results are based on this method.
Research findings: It is confirmed that the strength of flexible steel concrete beams with thrust directly depends on flexibility in the vertical direction.
Value: The effectiveness is shown for yielding supports in flexible steel concrete structures with thrust under short-term dynamic loading.
About the Authors
O. G. KumpyakRussian Federation
Oleg G. Kumpyak, DSc, Professor
2,Solyanaya Sq., 634003, Tomsk
Z. R. Galyautdinov
Russian Federation
Zaur R. Galyautdinov, DSc, A/Professor
2, Solyanaya Sq., 634003, Tomsk
D. R. Galyautdinov
Russian Federation
Daud R. Galyautdinov, PhD, A/Professor
2, Solyanaya Sq., 634003, Tomsk
References
1. Birbrayer A.N., Roleder A.Yu. Extreme Impacts on Structures. Saint-Petersburg, 2009. 594 p. (In Russian).
2. SP 88.13330.2014. The protective shelters of civil defense. Updated edition of SNiP II-11–77*. Moscow, 2014. 152 p. (In Russian)
3. Galyautdinov Z.R., Galyautdinov D.R., Gandziy M.V. Numerical and Experimental Research of Yielding Supports in Dynamic Loading. Vestnik Tomskogo gosudarstvennogo arkhitekturnostroitel'nogo universiteta – Journal of Construction and Architecture. 2018; 20 (4): 103–110. DOI: 10.31675/1607-1859-2018-20-4-103-110 (In Russian)
4. Galyautdinov Z.R. “Strength and deformability of reinforced concrete beam and slab structures on yielding supports under dynamic loading”. DSc Abstract. Tomsk, 2021. 48 p. (In Russian)
5. Elfetori F.A. Experimental Testing of Composite Tubes with Different Corrugation Profile Subjected to Lateral Compression Load. World Academy of Science, Engineering and Technology, International Journal of Mechanical, Aerospace, Industrial, Mechatronic and Manufacturing Engineering. 2013; 7 (2): 183–186.
6. Chiaia B., Kumpyak O., Placidi L., Maksimov V. Experimental Analysis and Modeling of Two- Way Reinforced Concrete Slabs over Different Kinds of Yielding Supports under Short-Term Dynamic Loading. Engineering Structures. 2015; (96): 88–99.
7. Fan Z., Shen J., Lu G. Investigation of Lateral Crushing of Sandwich Tubes. In: Proc. 12th East Asia-Pacific Conf. on Structural Engineering and Construction. Procedia Engineering. 2011; (14): 442–449.
8. Kellas S., Corliss J. Design, Fabrication and Testing of a Crushable Energy Absorber for a Passive Earth Entry Vehicle. Engineering, Environmental Science, 2002.
9. Lion K.H., Amir R.A.G., Prasetyo E., Khairi Y. Impact Energy Absorption of Concentric Circular Tubes. WSEAS Transactions on Applied and Theoretical Mechanics. 2009; 4 (3): 95–104.
10. Lipa S., Kotełko M. Lateral Impact of Tubular Structure – Theoretical and Experimental Analysis. Part 1 – Investigation of Single Tube. Journal of Theoretical and Applied Mechanics. 2013; 51 (4): 873–882.
11. Somya P., Chawalit T., and Umphisak T. An Analysis of Collapse Mechanism of Thin-Walled Circular Tubes. Subjected to Bending World Academy of Science. Engineering and Technology. 2007; 36: 329–334.
12. Younes M.M. Finite Element Modeling of Crushing Behaviour of Thin Tubes with Various CrossSections. In: Proc. 13th Int. Conf. ‘Aerospace Science, Aviation Technology’, May 26–28. 2009.
13. Galyautdinov Z.R., Kumpyak O.G. Strength Analysis of Reinforced Concrete Beams on Yielding Supports under Dynamic Loading. Stroitel'naya mekhanika i raschet sooruzhenii. 2022; (5): 33–41. (In Russian).
14. Galyautdinov Z.R., Kumpyak O.G., Galyautdinov D.R., Shipilova E.V. Dynamic Calculation of Reinforced Concrete Beams on Yielding Supports beyond Limits of Elasticity. Stroitel'naya mekhanika i raschet sooruzhenii. 2019; (4): 63–70. (In Russian)
15. Kumpyak O.G., Galyautdinov Z.R., Kokorin D.N. Strength and Deformability of Reinforced Concrete Structures on Yielding Supports under Dynamic Loading. Tomsk: TSUAB, 2016. 270 p. (In Russian)
16. Odnokopylov G.I., Kumpyak O.G., Galyautdinov Z.R., Galyautdinov Z.R. Determination of Survivability Parameters of Protected Critical Building Structures under Shock-Wave Loading. Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov. 2019; 330 (4): 110–125. (In Russian)
17. Rastorguev B.S. Ensuring Survivability of Buildings under Special Dynamic Effects. Bezopasnost' sooruzhenii. 2003; (4): 45–48. (In Russian)
18. Rastorguev B.S. “Strength of reinforced concrete building structures in explosive industries and special structures subject to dynamic load”. DSc Abstract. 1987. 37 p. (In Russian)
19. Said A.-R.A. “Increasing the bearing capacity of reinforced concrete structures under explosive effects”. DSc Thesis. 1995. 207 p. (In Russian)
20. Vinogradova T.N. “Thrust effect on reinforced concrete beam under dynamic load”. PhD Thesis, 1977. 155 p. (In Russian)
21. Galyautdinov D.R. “Strength and deformability of reinforced concrete beam with thrust on yielding supports under dynamic loading”. PhD Abstract 2023. 24 p. (In Russian)
22. Galyautdinov D.R. “Strength and deformability of reinforced concrete beam with thrust on yielding supports under dynamic loading”. PhD Abstract, 2023. 24 p. (In Russian)
23. Gvozdev A.A., Dmitriev S.A., Krylov S.M. New about Steel Concrete Strength. Moscow: Stroyizdat, 1976. 272 p. (In Russian)
24. Kumpyak O.G., Galyautdinov Z.R., Galyautdinov D.R. Thrust Effect on Strength of Reinforced Concrete Beams on Yielding Supports under Dynamic Loading. Izvestiya vuzov. Stroitel'stvo. 2023; (1): 5–16. (In Russian)
25. Kumpyak O.G., Galyautdinov Z.R. Experimental Research of Reinforced Concrete Edge Supported Slabs with Spacers. Vestnik of Tomsk State University of Architecture and Building. 2015; (3): 113–120. (In Russian)
26. Popov N.N., Rastorguev B.S. Calculation of Reinforced Concrete Structures for the Action of Short-Term Dynamic Loads. Moscow: Stroyizdat, 1964. 151 p. (In Russian)
27. Kumpyak O.G., Galyautdinov В.R. Numerical Calculation of Reinforced Concrete Beams with Spacing on Compliant Supports under Dynamic Load. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta – Journal of Construction and Architecture. 2022; 24 (5): 81–97. DOI: 10.31675/1607-1859-2022-24-5-81-97 (In Russian)
Review
For citations:
Kumpyak O.G., Galyautdinov Z.R., Galyautdinov D.R. Flexible Steel Concrete Beams with Thrust on Yielding Supports under Dynamic Load. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2025;27(5):145-159. (In Russ.) https://doi.org/10.31675/1607-1859-2025-27-5-145-159. EDN: PVGYZJ






















