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Received 11.05.2023

Revised 25.08.2023

Accepted 20.09.2023

Retrieved from Iss. 114, P. 1, 2023

Pages 88 -98

  • 135 Views

Suggested citation

Razboinikov, O., Davydenko, O., Kozarchuk, I., & Klochan, A. (2023). THE INFLUENCE OF THE QUALITY CONDITION OF THE ROAD SURFACE OF BRIDGES ON THE CHARACTER OF VEHICLE TRAFFIC. Automobile Roads and Road Construction, (114.1), 88-98. https://doi.org/10.33744/0365-8171-2023-114.1-088-098

THE INFLUENCE OF THE QUALITY CONDITION OF THE ROAD SURFACE OF BRIDGES ON THE CHARACTER OF VEHICLE TRAFFIC

Oleksandr Razboinikov Oleksandr Davydenko Ihor Kozarchuk Arsen Klochan

Abstract

This article presents a study aimed at identifying typical deformations of the road surface and determining their geometric parameters. These deformations not only affect the nature of the movement of motor vehicles, but also cause excessive dynamic loads on road bridges. Various methods are used in the research process, including measurement of vehicle movement parameters, diagnosis of bridge deck defects. Special attention is paid to the study of the impact of these defects on the traffic mode of vehicles and their impact on load-bearing bridge structures. The results obtained in the article are based on the combination and analysis of information received from specialists in the fields of road construction and automobile manufacturing. These results are the basis for mathematical modeling of the movement of heavy vehicles on bridges with damaged road surfaces

Keywords:

car, highway, defects, road surface, macro profile, micro profile, bridge, unevenness

References

  1. Razboinikov, O.O. (2021). Improvement of the course stability of a passenger car when driving on an uneven road. (PhD dissertation, National Transport University, Kyiv, Ukraine).
  2. Soltus, A.P. (2010). Theory of operational properties of an automobile: Study guide for higher education institutions. Kyiv: Aristei.
  3. Soltus, A.P. (1995). Fundamentals of the theory of the working process and calculation of control wheel modules. (Abstract of doctoral dissertation, Kyiv, Ukraine).
  4. Bohomolov, V.O., Klymenko, V.I., Shylov, A.L., & Aliieksieiev, R.V. (2011). Modeling of road surface for calculating the dynamics of vehicle movement. Automobile Transport, 29, 37-42.
  5. Hordieiev, V.N. (1973). Statistical study of disturbing effects from road irregularities on moving vehicles. (PhD dissertation, Dnipropetrovsk, Ukraine).
  6. Klets, D.M. (2013). Assessment of vehicle stability against skidding when driving on an uneven road. Bulletin of the National Technical University “KhPI”, 30(1003), 55-61.
  7. Mitschke, M., & Wallentowitz, H. (2014). Dynamics of motor vehicles. Berlin: Springer.
  8. Matschinsky, W. (2007). Wheel guidance of road vehicles: Kinematics, elasto-kinematics and design. Munich: Springer. 
  9. Jazar, R.N. (2008). Vehicle dynamics: Theory and application. New York: Springer.
  10. Dixon, J.C. (2009). Suspension geometry and computation. Chichester: Wiley.
  11. Rill, G. (2012). Road vehicle dynamics: Fundamentals and modeling. Boca Raton: CRC Press.
  12. Klets, D.M. (2013). Determination of normal reactions on the front and rear wheels of a vehicle when driving on an uneven road. Bulletin of KhNAHU, 61-62, 195-199.
  13. Blundell, M., & Harty, D. (2015). The multibody systems approach to vehicle dynamics (2nd ed.). Oxford: Butterworth-Heinemann.
  14. Sakhno, V.P., et al. (2014). Operational properties of motor vehicles. In 3 parts. Part 2. Ride comfort and cross-country ability of motor vehicles: Study guide. Donetsk: LANDON-XXI.
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https://doi.org/10.33744/0365-8171-2023-114.1-088-098

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