Investigation of mechanical hysteresis under cyclic loading in bolted connection of crane slewing-bolt device

Authors

  • Taras M. Martynenko State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25 https://orcid.org/0009-0000-6609-2030
  • Olga O. Smillovenko State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25 https://orcid.org/0000-0003-1612-9573
  • Sergey A. Pronkevich Closed Joint-Stock Company «String Technologies»; 220089, Belarus, Minsk, Zheleznodorozhnaya str., 33
  • Sergey A. Losik State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25
  • Ignat M. Martynenko Belarusian State University; 220030, Belarus, Minsk, pr. Nezavisimosti, 4

DOI:

https://doi.org/10.33408/2519-237X.2025.9-3.335

Keywords:

hreaded joints, hysteresis loop area, finite element modeling, cyclic loading, bolted joint destruction, combined types of loading

Abstract

Purpose. Estimation of bearing capacity and areas of destruction of threads of bolt connection of the crane slewing support device.

Methods. The method of three-dimensional modeling in the Autodesk Inventor Professional environment, which allows to work with the assembly of solid bodies being in parametric dependencies between each other, was used to study the behavior of the bolt connection of the tower crane slewing device under cyclic loading.

Findings. The bolted connection of the tower crane slewing support device was investigated in ANSYS environment. The load acting on tested connection resulted in plastic deformations and then the tested connection was unloaded. The unloading occurred according to the elastic law, and the residual deformations were preserved. The most probable scenario of change in the plastic properties of the bolted connection was modeled, and the areas of critical stresses were determined. The developed finite element model allows describing the behavior of the bolted joint and determining the areas of thread destruction.

Application field of research. Prediction of strength loss in the most probable areas of overloading, and, as a consequence, displacement of bolted joint under small frequent loads.

Author Biographies

Taras M. Martynenko, State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25

Chair of Industrial Safety, Associate Professor; PhD in Physical and Mathematical Sciences, Associate Professor

Olga O. Smillovenko, State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25

Chair of Industrial Safety, Professor; PhD in Technical Sciences, Associate Professor

Sergey A. Pronkevich, Closed Joint-Stock Company «String Technologies»; 220089, Belarus, Minsk, Zheleznodorozhnaya str., 33

Bureau of Machine-Building Structures Calculation, Head of the Bureau; PhD in Physical and Mathematical Sciences, Associate Professor

Sergey A. Losik, State Educational Establishment «University of Сivil Protection of the Ministry for Emergency Situations of the Republic of Belarus»; 220118, Belarus, Minsk, Mashinostroiteley str., 25

Chair of Industrial Safety, Senior Lecturer

Ignat M. Martynenko, Belarusian State University; 220030, Belarus, Minsk, pr. Nezavisimosti, 4

Faculty of Applied Mathematics and Computer Science, Chair of Fundamental Mathematics and Intelligent Systems, Associate Professor; PhD in Physical and Mathematical Sciences, Associate Professor

References

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Published

2025-08-13

How to Cite

Martynenko Т. М., Smillovenko О. О., Pronkevich С. А., Losik С. А. and Martynenko И. М. (2025) “Investigation of mechanical hysteresis under cyclic loading in bolted connection of crane slewing-bolt device”, Journal of Civil Protection, 9(3), pp. 335–343. doi: 10.33408/2519-237X.2025.9-3.335.

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Section

Industrial safety. Reliability of technique and equipment. Labor protection

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