Communications - Scientific Letters of the University of Zilina 2026, 28(2):B89-B98 | DOI: 10.26552/com.C.2026.027

Development and Research of Working Parts of Joint Cutting Machines with Cycloidal Motion

Yerbol Kaliyev ORCID...1, Turly Dyussengaliyeva ORCID...1, Beibitbek Zhunisbekov ORCID...2, Manarbek Yessengaliyev ORCID...1, Nurbol Kamzanov ORCID...2, Zhuldyz Dainova ORCID...3, Rustem Kozbagarov ORCID...1, *
1 Mukhametzhan Tynyshbayev ALT University, Almaty, Republic of Kazakhstan
2 Satbayev University, Almaty, Republic of Kazakhstan
3 Ekibastuz Engineering and Technical Institute named after academician K. Satpayev, Ekibastuz, Republic of Kazakhstan

The development of a country's economy largely depends on the pace and efficiency of construction work, which, in turn, is determined by the extent to which innovative technologies and techniques are used. This work is devoted to justification of the basic parameters and the development of a new working body for a machine for cutting joints in road surfaces. A design with cycloidal motion is proposed, which intensifies the destruction process due to the vibrational impact of the cutters on the material being processed. The use of such a working body provides a vibrational effect, increases the cutting speed, and reduces the energy consumption of the process. As a result of intensifying the interaction between the working body and the material, it was possible to reduce the energy consumption of cutting by 1.13 times, and increase productivity by 1.18 times compared to analogues.

Keywords: working body, slitting machine, cycloidal motion, energy consumption, cutting force
Grants and funding:

The authors received no financial support for the research, authorship and/or publication of this article.

Conflicts of interest:

The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Received: January 5, 2026; Accepted: April 10, 2026; Prepublished online: April 21, 2026; Published: April 24, 2026  Show citation

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Kaliyev, Y., Dyussengaliyeva, T., Zhunisbekov, B., Yessengaliyev, M., Kamzanov, N., Dainova, Z., & Kozbagarov, R. (2026). Development and Research of Working Parts of Joint Cutting Machines with Cycloidal Motion. Communications - Scientific Letters of the University of Zilina28(2), B89-98. doi: 10.26552/com.C.2026.027
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References

  1. STOPKA, O., KUCERKA, D., KAMPF, R., LIZBETIN, J., BARTUSKA L., KMEC, J., GOMBAR, M., WEISS,V. Heavy machinery required for the proper application of geosynthetic products in the implementation of transport constructions. Procedia Engineering [online]. 2016, 161, p. 445-450. ISSN 1877-70587. Available from: https://doi.org/10.1016/j.proeng.2016.08.588 Go to original source...
  2. DOVGYALO, V. A., BOCHKAREV, D. I. Road construction machines. Part I: Machines for earthworks. Gomel: Belarusian state University of Transport, 2010. ISBN 978-985-468-741-4.
  3. DOVGYALO, V. A., BOCHKAREV, D. I. Road construction machines. Part II. Machines for the construction and repair of road surfaces. Gomel: Belarusian state University of Transport, 2018. ISBN 978-5-7996-2386-9.
  4. FEDOROV, D. I. Working bodies of earth-moving machines. Moscow: Mechanical Engineering, 1977. ISBN 5-217-00490-8.
  5. VOLKOV, D. P., KRIKUN, V. Y., TOTOLIN, P. E., GAEVSKAYA, K. S. Earthwork machines. Moscow: Mechanical Engineering, 1992. ISBN 5-217-01973-5.
  6. BALOVNEV, V. I. Modeling of interaction processes with the environment of working bodies of road construction machines. Moscow: Higher School, 1981, ISBN 5-217-02343-0.
  7. SHERBAKOV, A. P., PUSHKAREV, A. E., MAKSIMOV, S. E. Replacement working body material as a way to increase reliability of road construction machines. The Russian Automobile and Highway Industry Journal [online]. 2021, 18(6), p. 646-661. ISSN 2071-7296, eISSN 2658-5626. Available from: https://doi.org/10.26518/2071-7296-2021-18-6-646-661 Go to original source...
  8. BURGONUTDINOV, A. M. Machines for the construction, repair and maintenance of highways. Part 3: Machinery and equipment for the repair and maintenance of road. Perm: Perm National Research Polytechnic University, 2011. ISBN 978-5-398-00900-2.
  9. LUKASHUK, О. А., KOMISSAROV, A. P., LETNEV, K. Y. Machines for soil development. Design and calculation. Ekaterinburg: Ural University Publishing House, 2018. ISBN 978-5-7996-2386-9.
  10. KOZBAGAROV, R. A., KAMZANOV, N. S., AKHMETOVA, S. D., ZHUSSUPOV, K. A., DAINOVA, Z. K. Improving the methods of milling gauge on highways. News of the National Academy of Sciences of the Republic of Kazakhstan, Series of Geology and Technical Sciences [online]. 2021, 3(447), p. 87-93. ISSN 2224-5278, eISSN 2518-170X. Available from: https://doi.org/10.32014/2021.2518-170X.67 Go to original source...
  11. ILGE, I. Model of selection of a road miller. Bulletin of Kharkov National Automobile and Highway University [online]. 2021, 1(92), p. 103-108. ISSN 2219-5548, eISSN 2521-1773. Available from: https://doi.org/10.30977/BUL.2219-5548.2021.92.0.103 Go to original source...
  12. KAMZANOV, N., AMANOVA, M., BAIKENZHEYEVA, A., NAIMANOVA, G., KOZBAGAROV, R. Automated road milling cutter for repair of the road surfaces with variable trackage. Communications - Scientific letters of the University of Zilina [online]. 2023, 25(2), p. B157-B164. ISSN 2224-5278, eISSN 2518-170X. Available from: https://doi.org/10.26552/com.C.2023.039 Go to original source...
  13. TCHUFISTOV, E. A., TCHUFISTOV, O. E., BLAGOJEVIC, M., VASIC, M. Simulation of motion in a cycloidal gear. Part II. Loaded gear (in Russian). University Proceedings. Volga Region. Engineering Sciences [online]. 2025, 1, p. 92-105. ISSN 2072-3059. Available from: https://doi.org/10.21685/2072-3059-2025-1-8 Go to original source...
  14. TCHUFISTOV, E. A., TCHUFISTOV, O. E., BLAGOJEVIC, M. Loads in the planetary-pinion gear with modification of the tooth profile and eccentricity of the satellites [online]. In: Latest advancements in mechanical engineering. ISIEA 2024. Lecture Notes in Networks and Systems, vol 1124. CONCLI, F., MACCIONI, L., VIDONI, R., MATT, D. T. (Eds.). Cham: Springer, 2024. ISBN 978-3-031-70461-1, eISBN 978-3-031-70462-8, p. 84-95. Available from: https://doi.org/10.1007/978-3-031-70462-8_8 Go to original source...
  15. KOZBAGAROV, R. A., SHALBAYEV, K. K., ZHIYENKOZHAYEV, M. S., KAMZANOV, N. S., NAIMANOVA, G. T. Design of cutting elements of reusable motor graders in mining. News of the National Academy of Sciences of the Republic of Kazakhstan, Series of Geology and Technical Sciences [online]. 2022, 3(453), p. 128-141. ISSN 2224-5278, eISSN 2518-170X. Available from: https://doi.org/10.32014/2022.2518-170X.185 Go to original source...
  16. KOZBAGAROV, R., AMANOVA, M., KAMZANOV, N., BIMAGAMBETOVA, L., IMANGALIYEVA A. Investigation of wear of cutting part of polygonal knife car graders in different ground conditions. Communications - Scientific letters of the University of Zilina [online]. 2022, 24(4), p. D229-D238. ISSN 2224-5278, eISSN 2518-170X. Available from: https://doi.org/10.26552/com.C.2022.4.D229-D238 Go to original source...
  17. KAKINUMA, Y., IGARASHI, K., KATSURA, S., AOYAMA, T. Development of 5-axis polishing machine capable of simultaneous trajectory, posture, and force control. CIRP Annals [online]. 2013, 62(1), p. 379-382. ISSN 0007-8506, eISSN 1726-0604. Available from: https://doi.org/10.1016/j.cirp.2013.03.135 Go to original source...
  18. ZAKHAROV, O. V, KOCHETKOV, A. V. Minimization of the systematic error in centerless measurement of the roundness of parts. Measurement Techniques [online]. 2016, 589(12), p. 1317-1321. ISSN 1573-8906. Available from: https://doi.org/10.1007/s11018-016-0892-6 Go to original source...

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