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A new mining dynamic cable configuration device has been designed with adjustable cable curvature, full-range guiding restriction, and an anti-dragging warning function to improve the intelligence level and multi-scenario applicability. The digital model of the dynamic cable configuration device is constructed, and a theoretical formula for interactions between its structure parameters, assembly parameters, and the cabling work state is deduced. Strength analysis and topology optimization reconstruction of the side plate of the dynamic cable configuration device are carried out by using Ansys. The intelligent cable retractable device has been successfully applied in engineering. These research results can provide a theoretical basis for cooperative regulation and intelligent upgrading of both mining dynamic cable configuration devices and intelligent cable retractable devices.
Czasopismo
Rocznik
Tom
Strony
491--505
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
- School of Vehicle and Transportation Engineering, Taiyuan University of Science and Technology, Taiyuan, China
- Shanxi Intelligent Transportation Laboratory Co., Ltd., Taiyuan, China
autor
- School of Vehicle and Transportation Engineering, Taiyuan University of Science and Technology, Taiyuan, China
- Shanxi Intelligent Transportation Laboratory Co., Ltd., Taiyuan, China
autor
- School of Vehicle and Transportation Engineering, Taiyuan University of Science and Technology, Taiyuan, China
- Smart Transportation Laboratory in Shanxi Province, Taiyuan, China
autor
- School of Vehicle and Transportation Engineering, Taiyuan University of Science and Technology, Taiyuan, China
- Smart Transportation Laboratory in Shanxi Province, Taiyuan, China
autor
- Technology Center, Shanxi Jiacheng Hydraulic Co., Ltd., Yuanping, China
Bibliografia
- 1. Amnuanpol S., 2019, Shape sequence of rope coiling on a rotating plane, EPL (Europhysics Letters), 125, 5, 54001.
- 2. Bendsøe M.P., Kikuchi N., 1988, Generating optimal topologies in structural design using a homogenization method, Computer Methods in Applied Mechanics and Engineering, 71, 2, 197-224.
- 3. Gere J.M., Timoshenko S.P., 1984, Mechanics of Materials, 2nd SI ed., Van Nostrand Reinhold Co., New York.
- 4. Han Y.Y., Zhang Z.G., Zhu K.G., 2012, The design on the improvement of the electric scooptram’s cable arrangement device, Applied Mechanics and Materials, 2034, 229-231.
- 5. Kevac L., Filipovic M.M., 2017, Mathematical model of cable winding/unwinding system, Journal of Mechanics, 35, 1, 131-143.
- 6. Kevac L., Filipovic M., Rakic A., 2017, Dynamics of the process of the rope winding (unwinding) on the winch, Applied Mathematical Modelling, 48, 821-843.
- 7. Nie J.N., Wang H., Xie D.F., 2011, Finite element analysis of drum on the new type self-driven towing machine for cable, Applied Mechanics and Materials, 1245, 55-57, 664-669.
- 8. Radhi A., Iacobellis V., Behdinan K., 2021, Manipulation of topologically optimized structures using graphic statics, Materials and Design, 198, 109286.
- 9. Song G.H., Jing S.K., Zhao F.L. Wang Y.D., Xing H., Zhou J.T., 2017, Design optimization of irregular cellular structure for additive manufacturing, Chinese Journal of Mechanical Engineering, 30, 5, 1184-1192.
- 10. Sun L.Q., Zhang X.D., Zeng Q.L., Gao K.D, Jiang K., Zhou J.W., 2022, Application of a screw conveyor with axial tilt blades on a shearer drum and investigation of conveying performance based on DEM, Particuology, 61, 91-102.
- 11. Tang Z., Li S.Q., Huang F., Yang J.W., Yan F. et al., 2022, Optimization of a cable support strategy for roadways in coal mines by using the PSO algorithm, Geotechnical and Geological Engineering, 40, 153-163.
- 12. Topno S.A., Sahoo L.K., Umre B.S., 2021, Energy efficiency assessment of electric shovel operating in opencast mine, Energy, 230, 120703.
- 13. Wang Z.Y., 2022, Dynamics Analysis of the Cable Arrangement System for Full Ocean Depth Geological Winch (in Chinese), Harbin Engineering University, Harbin.
- 14. Wang Z.W., Jin Z., Wang J., 2023, Maceral and organic geochemical characteristics of the No. 6 coal seam from the Haerwusu Surface Mine, Inner Mongolia, China, Energy Exploration and Exploitation, 41, 5, 1643-1662.
- 15. Zhang W.H., Dai G.M., Wang F.W., Sun S.P., Bassir H., 2007, Using strain energy-based prediction of effective elastic properties in topology optimization of material microstructures, Acta Mechanica Sinica, 23, 1, 77-89 .
- 16. Zhao S.X., 2023, Lightweight and Dynamic Characteristic Research of Walking System for Intelligent Cable Retracting and Releasing Machine (in Cinese), Taiyuan University of Science and Technology, Taiyuan.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8a0f02fc-8cb4-4210-bee7-66f337e6d83a
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