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2024 | vol. 42, iss. 4 | 240--248
Tytuł artykułu

Monitoring of selected parameters of the belt transmission on a specific design solution

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EN
Abstrakty
EN
Belt drives have been used for decades to transmit power from a drive unit to an end device in a variety of applications. There is constant scientific, technical and technological progress in the production and use of belts, which has led to a variety of types and types of belts. Belt drives have several advantages over other methods of power transmission, including light weight, affordability, and the ability to be used as a slip clutch. As the requirements for V-belts increase, so does the required quality of the offered belts. When analyzing belt transmissions, it is also possible to examine their influence on other components of the machine or equipment on which they are installed. If the belt drive transmits large forces, this can have consequences on the bearings and other parts of the transmission. It is therefore essential to ensure that belt drives are optimally designed and installed to minimize potential damage to other components. On the designed specific design solution for testing belt transmissions, the actual revolutions of the input and output pulleys were monitored, the belt float was measured using high-precision distance measurement sensors, and the vibrations were measured using a magnetically fixed sensor. During the experimental measurements, parameters such as belt tension, input speed and output load were changed. The experimental measurements themselves were carried out on three A1450Lw 13x1420Li belts of the same dimensions, but manufactured by other manufacturers (Optibelt, Rubena and Gufero).
Wydawca

Czasopismo
Rocznik
Strony
240--248
Opis fizyczny
Bibliogr. 16 poz., tab., wykr., zdj.
Twórcy
  • Technical University of Kosice, Faculty of Manufacturing Technologies, Bayerova 1, 08001 Presov, Slovak Republic, jozef.mascenik@tuke.sk
  • Technical University of Kosice, Faculty of Manufacturing Technologies, Bayerova 1, 08001 Presov, Slovak Republic
  • Technical University of Kosice, Faculty of Manufacturing Technologies, Bayerova 1, 08001 Presov, Slovak Republic
  • Technical University of Kosice, Faculty of Manufacturing Technologies, Bayerova 1, 08001 Presov, Slovak Republic
Bibliografia
  • [1] Novak-Marcincin, J.: New trends in computer aided manufacturing engineering. In: New trends in mechanical design and technologies. Cluj-Napoca: Risoprint, 2005, p. 125-172, ISBN 9737510844.
  • [2] Mischke Ch. R., Shigley J. E., Budynas R. G.: Construction of machine parts, Academic publishing house, VUTIUM, p. 1159, r. 2010, ISBN 9788021426290.
  • [3] Pavlenko, S., Halko, J., Mascenik, J., Novakova, M.:Machine parts2, 1. vyd -Presov: FVT TU -2008. 185 p. ISBN 978-80-553-0103-7.
  • [4] Rerabek, A.: Construction and operation of machines for school and practice2, SCIENTIA, 2009, 256p, ISBN 978-80-86960-21-0.
  • [5] Pavlenko, S., Halko, J., Mascenik, J.: Parts and mechanisms of machines,Kosice TU -2017. 249 p. ISBN 978-80-553-2844-7.
  • [6] Cepon, G., Manin, L., Miha, B.: Introduction of damping into the flexible multibody belt-drive model,A numerical and experimental investigation." Journal of Sound and Vibration 324, (2009) 283-296.
  • [7] Pollak, A., Temich, S., Ptasiński, W., Kucharczyk, J., & Gąsiorek, D. (2021). Prediction of belt drive faults in case of predictive maintenance in industry 4.0 platform. Applied Sciences, 11(21), 10307.
  • [8] Romaniuk, V., Mascenik, J., Krenicky, T., Panda, A., Zaborowski, T. E.:Design of a concept for online monitoring of beam deflection under controlled loading,2023. In: Mechanical and physical properties of materials in different constellations Monograph. -Poznan (Poland): Polish Academy of Sciences, Institute of Research and Scientific Expertise s. 86-92. ISBN 978-83-66246-66-9.
  • [9] Halko, J., Pavlenko, S., Mascenik, J.: Designing power stations with gear, belt and chain transmissions, 1. Presov: TU -2013. -220 s. ISBN 978-80-553-1504-1.
  • [10] Ryba, T., Bzinkowski, D., Siemiątkowski, Z., Rucki, M., Stawarz, S., Caban, J., & Samociuk, W. (2024). Monitoring of Rubber Belt Material Performance and Damage. Materials, 17(3), 765.
  • [11] Kozłowski, T., Wodecki, J., Zimroz, R., Błażej, R., & Hardygóra, M. (2020). A diagnostics of conveyor belt splices. Applied Sciences, 10(18), 6259.
  • [12] Mascenik, J.: Monitoring of parameters directly influencing performance transfer by belt gear, 2017. In: MM Science Journal. Vol. 2017, no. December (2017), p. 1959-1962. -ISSN 1803-1269.
  • [13] Raad, H. A., Mohsen K. A.: Dignosis of pulley-belt system faults using vibration analysis technique. Journal of University of Babylon for Eng. Sciences (2018).
  • [14] Algule, S. R., Hujare, D. P.: Experimental study of unbalance in shaft rotor system using vibration signature analysis. International Journal 124.Prashant Athnekar, 2015.
  • [15] Valencik, S., Stejskal, T.: Machine maintenance, diagnostics and repairs, 2015, 230 p TU, Kosice, EAN:9788055322490, ISBN: 978-80-553-2249-0.
  • [16] Jamrichova, Z., et Al.: Machine and equipment diagnostics, EDIS, 2011, 280 p, ISBN 9788055403854.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
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