EFFICIENCY OF USING POLYMER CONVEYOR ROLLERS AND COMPARATIVE ANALYSIS OF THEIR MANUFACTURING TECHNOLOGIES
https://doi.org/10.53360/2788-7995-2026-1(21)-28
Abstract
This paper presents an extended comparative analysis of the traditional injection molding technology and additive 3D printing technology in the production of polymer rollers for belt conveyors of various applications. The technological features of the processes, their production limitations, economic feasibility, and areas of rational application in mass and small-batch manufacturing are considered.
The mass and dimensional characteristics of the rollers were calculated, and the reduction in metal consumption compared with conventional steel analogues was evaluated. The influence of reducing the mass of rotating components on the dynamic parameters of the system, including starting loads, operating modes, and overall energy consumption of the conveyor line, was analyzed.
It is shown that the use of modern polymer materials allows reducing the roller mass by more than two times without deterioration of operational characteristics. This contributes to improved energy efficiency, reduced wear of drive units, and increased service life of the equipment.
Criteria for selecting the manufacturing technology depending on production volume, strength requirements, and operating conditions are determined.
About the Authors
Ye. ShayakhmetovKazakhstan
Yerzhan Shayakhmetov – PhD, «Automation and Information Technologies»
071412, Semey, Glinka St., 20A
R. Sovetbayev
Kazakhstan
Rail Ayanovich Sovetbayev – PhD, «Automation and Information Technologies»
071412, Semey, Glinka St., 20A
K. Ozhmegov
Poland
Kirill Ozhmegov – PhD, Department of Production Management
J.H. Dąbrowskiego Street 69, 42-201 Częstochowa
A. Bilyalov
Kazakhstan
Altair Bilyalov – Master’s Student of the Educational Program 7M07104 – «Mechanical Engineering»
071412, Semey, Glinka St., 20A
A. Nurbekov
Kazakhstan
Aslan Nurbekovich Nurbekov – Bachelor of the Educational Program 6B07108 – Digital Technologies in Mechanical Engineering
071412, Semey, Glinka St., 20A
References
1. Ma J. The Application of 3D Printing in Mechanical Manufacturing / J. Ma // Applied and Computational Engineering. – 2025. – № 117. – Р. 44-50. https://doi.org/10.54254/2755-2721/2025.20112.
2. Baigarina A. Construction 3D printing: a critical review and future research directions / A. Baigarina, E. Shehab, M.H. Ali // Progress in Additive Manufacturing. – 2023. – № 8(6). – Р. 1393-1421. https://doi.org/10.1007/s40964-023-00409-8.
3. Recent Advances in Additive Manufacturing: A Review of Current Developments and Future Directions / L. Ben Said et al // Machines. – 2025. – № 13. – Р. 813. https://doi.org/10.3390/machines13090813.
4. Experimental Study on Mechanical Performance and Blast Resistance of Aramid, Carbon, and UHMWPE Fabrics / J. Xie et al // Polymers. – 2026. – № 18. – Р. 612. https://doi.org/10.3390/polym18050612.
5. Mechanical and tribological properties of FDM-printed polyamide / Chengshuo Wang et al // Tribology International. – 2024. – Vol. 191. – Р. 109198. https://doi.org/10.1016/j.triboint.2023.109198.
6. Thermoset and Thermoplastic Polymers / A. Bırca et al // Materials for Biomedical Engineering: Thermoset and Thermoplastic Polymers. – 2019. – Р. 1-28. https://doi.org/10.1016/B978-0-12-816874-5.00001-3.
7. Bychkova E.V. Processes for Manufacturing Polymer and Composite Products by Pressing and Injection Molding: Textbook for Bachelor Students / E.V. Bychkova, N.V. Borisova, L.G. Panova, Moscow: IPR Media, 2021.
8. Osarenmwinda J.O. Optimization of Injection Moulding Process Parameters in the Moulding of High Density Polyethylene / J.O. Osarenmwinda, D.D. Olodu // Journal of Applied Sciences and Environmental Management. – 2018. – № 22(2). – Р. 203-206. https://doi.org/10.4314/jasem.v22i2.8.
9. Olenev B.A. Design of Plastic Processing Plants / B.A. Olenev, E.M. Mordkovich, V.F. Kaloshin, Moscow: Khimiya, 1982. – 256 p.
10. Demurin A.S. Influence of contact stresses on the durability of viscoelastic idler supports. In: Quality Management: Research Problems and Experience / A.S. Demurin // Saint Petersburg: St. Petersburg Engineering and Economic University Publishing House. – 2002. – Issue 2. – Р. 180-187.
11. Manual for Conveyor Transport Design: Belt Conveyors (for SNiP 2.05.07-85). – Moscow: Stroyizdat, 1988.
Review
For citations:
Shayakhmetov Ye., Sovetbayev R., Ozhmegov K., Bilyalov A., Nurbekov A. EFFICIENCY OF USING POLYMER CONVEYOR ROLLERS AND COMPARATIVE ANALYSIS OF THEIR MANUFACTURING TECHNOLOGIES. Bulletin of Shakarim University. Technical Sciences. 2026;1(1(21)):259-266. https://doi.org/10.53360/2788-7995-2026-1(21)-28
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