Construction and method of assessment and research of the parameters of a load-lifting winch with a sectional disc drum
DOI:
https://doi.org/10.15587/2706-5448.2023.274692Keywords:
winch, lifting equipment, sectional drum, multi-layer winding, construction of insulating winch, fastening of cargo ropes on the drumAbstract
The object of the study is a load-lifting winch with a sectional-disc drum for single-row multi-layer laying of flexible elements, cargo cables and power cables, during their winding, electrically protected. The winch is intended for suspension and lifting and lowering of illuminated devices and equipment in closed rooms.
In the process of research (constructive development, determination and analysis of parameters), the problem of creating a winch design of the specified type with a qualitatively increased overall level of functionality is solved according to the indicators:
1) electrical insulation, compactness and necessary strength of fastening of flexible elements, lifting cables and power cables on the drum;
2) controllability of the drive: in transitional periods – to ensure smooth acceleration-stopping of the suspension; in the period of constant movement – to ensure a constant speed of the suspension during raising and lowering.
Electrical insulation between the power cable, the drum and other parts of the winch is created by using parts (discs) made of synthetic insulating material, for example, fiberglass, in the construction of the drum. Clamping of flexible elements between the disks in specially profiled C-shaped ring grooves, on the ends of the hub, of the disks ensures the necessary strength and compactness of the attachment. The smoothness of starting (stopping) of the drive and the constant speed of the suspension during the period of constant movement are established by adjusting the frequency converter in the drive control system according to the parameters determined by a specially developed methodology.
The obtained results, constructive solutions and methods of research (estimation and analysis) of winch parameters can be used in the design of the structure and adjustment of the control system of lifting devices of this type.
References
- NPAOP 92.0-1.01-09 «Pravyla okhorony pratsi dlia pratsivnykiv teatriv i kontsertnykh zaliv» (2009). Available at: https://dnaop.com/html/31742/doc-%D0%9D%D0%9F%D0%90%D0%9E%D0%9F_92.0-1.01-09
- DIN 56950-1:2012-05 «Veranstaltungstechnik – Maschinentechnische Einrichtungen – Teil 1: Sicherheitstechnische Anforderungen und Prüfung» (2012). Available at: https://www.beuth.de/de/norm/din-56950-1/149001091
- DGUV Vorschrift 17 Unfallverhütungsvorschrift Veranstaltungsund Produktionsstätten für szenische Darstellung (2017). Available at: https://publikationen.dguv.de/widgets/pdf/download/article/1068
- NPAOP 0.00-1.01-07 «Pravyla budovy i bezpechnoi ekspluatatsii vantazhopidiimalnykh kraniv» (2007). Available at: http://online.budstandart.com/ua/catalog/doc-page?id_doc=27540
- Mini Powered Pile Wind Winch. Vol. 1 (2018). Available at: https://cdn.shopify.com/s/files/1/1991/2025/files/13.07.2018.Mini_Powered_Pile_Wind_Winch.Datasheet.V1.pdf?7668249408614091163
- Installation view Studio Drift: Coded Nature (2018). Stedelijk Museum Amsterdam. Available at: https://www.stedelijk.nl/en/news-press/press-images/studio-drift-2
- Budnyk, A. F., Yuskaiev, V. B., Budnyk, O. A. (2008). B–90 Nemetalevi materialy v suchasnomu suspilstvi. Sumy: Vyd-vo SumDU, 222.
- Bondariev, V. S., Dubinets, O. I., Kolisnyk, M. P., Bondariev, S. V., Horbatenko, Yu. P., Barabanov, V. Ya. (2009). Pidiomno-transportni mashyny. Rozrakhunky pidiimalnykh i transportuvalnykh mashyn. Kyiv: Vyshcha shkola, 734.
- RD 24.090.90-89 «Mashiny gruzopodemnye. Osnovnye trebovaniia k tekhdokumentatcii na rekonstruktciiu» (1989). Available at: https://meganorm.ru/Data2/1/4293829/4293829866.htm
- Kazachkovskii, N. N., Iakupov, D. V. (2008). Nastroika preobrazovatelia chastoty ALTIVAR 21. Dnepropetrovsk, 81.
- Ye, H., Li, W., Lin, S., Ge, Y., Han, F., Sun, Y. (2021). Experimental investigation of spooling test on the multilayer oceanographic winch with high-performance synthetic fibre rope. Ocean Engineering, 241, 110037. doi: https://doi.org/10.1016/j.oceaneng.2021.110037
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