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Constructional features of ropes in functional units of mining shaft hoist

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper structural analysis of steel ropes applied in mining shaft hoists was conducted. Functions of the ropes which they fulfilled in these shaft hoists were identified. Expected operational features of ropes were indicated too. An analysis was carried out four identified groups of ropes: hoisting ropes, balance ropes, leading rope and fender ropes. Basic constructional features: geometrical and material of ropes, which they should be characterized in each of mentioned functional groups were indicated. Constructional structures of mentioned steel ropes, the most often applied in domestic mining shaft hoists were described. Observed tendencies in analyzed issues also were shown.
Rocznik
Strony
66--71
Opis fizyczny
Bibliogr. 28 poz., rys.
Twórcy
autor
  • Research and Supervisory Centre of Underground Mining, ul. Lędzińska 8, 43-143 Lędziny, Poland
autor
  • Doctoral studies, University of Science and Technology, ul. S.Kaliskiego 7, 85-796 Bydgoszcz, Poland
  • Faculty of Mechanical Engineering, University of Science and Technology, ul. S.Kaliskiego 7, 85-796 Bydgoszcz, Poland
Bibliografia
  • 1. Carbogno A., Fundalewicz Z., Mateja S. (2005), Safety of the round balancing rope type „SUPERFLEX”, Proceedings of International Conference „Shafts Transport 2005”, Institute of Mining Technology „KOMAG”, Gliwice – Zakopane, 221-232 (in Polish).
  • 2. Carbogno A., Żołnierz M., Mateja S. (2010), Rope with surface contact of wires used in mining transport equipment, Proceedings of International Conference „Safety Operation of Mining Transport Equipment” Research and Supervisory Centre of Underground Mining, Lędziny – Ustroń, 45-55 (in Polish).
  • 3. Catalogs of rope manufacturers: ArcelorMittal, Bourg-an-Bresse Wire, Polish Ropes, Sosnowiec, Teufelberger, Wels, SAG, Katowice, SILTrade (in Polish).
  • 4. Chang X.D., Peng Y.X., Zhu Z.C., Gong X.S., Yu Z.F., Mi Z.T., Xu C.M. (2017), Effects of strand lay direction and crossing angle on tribological behavior of winding hoist rope, Materials, 10, 630.
  • 5. Chang X.D., Peng Y.X., Zhu Z.C., Wang D.G., Gong X.S., Zou S.Y., Sun S.S., Mi Z.T., Xu W.X. (2016), Tribological properties of winding hoisting rope between two layers with different sliding parameters, Advances in Mechanical Engineering, 8(12), 1-14.
  • 6. Guo Y.B., Zhang D.K., Yang X.H., Feng C.N., Ge S.R. (2017), Experimental research on effect of wire rope transverse vibration on friction transmission stability in a friction hoisting system, Tribology International, 115, 233-245.
  • 7. Hansel J. (ed.) (2000), Steel-rubber balances ropes SAG. Scientific and Technical Papers KTL – AGH Kraków, 19, 1-125 (in Polish).
  • 8. Kwaśniewski J. (2010), Magnetic steel ropes tests. AGH Publishers, Kraków (in Polish).
  • 9. Li S.L., Hu P.Y., Zhao X.F., Chen K.J., Li J.K. (2017), Atmospheric corrosion performance of wire rope sling in a sulfur dioxide-polluted environment, Advances in Mechanical Engineering, 9(6), 1-12.
  • 10. Ma C., Xiao X.M. (2013), Kinetic analysis of a multi-rope friction mine hoist under overload conditions, Journal of Vibroengineering, 15(2), 925-932.
  • 11. Ma Y.S., Xiao X.M. (2016), Dynamic analyses of hoisting ropes in a multi-rope friction mine hoist and determination of proper hoisting parameters, Journal of Vibroengineering, 18(5), 2801-2817.
  • 12. Mańka E. (2013), Comparative analysis of ropes test methods in terms of increasing accuracy and informativeness of the tests, Doctor’s dissertation, Faculty of Mechanical Engineering, University of Science and Technology in Bydgoszcz (in Polish).
  • 13. Mańka E., Styp-Rekowski M. (2009), Diagnostic tests of balance ropes of mining hoist, Proceedings of International Conference „TEMAG” 2009, Silesian Technical University, Gliwice – Ustroń, 185- 195 (in Polish).
  • 14. Mateja S., Pojnar A. (2005), Analysis of the technical condition of the multi-layer balance rope Ø49 mm type NRHD-24 after the operation, Proceedings of International Conference „Shafts Transport 2005”, Institute of Mining Technology „KOMAG”, Gliwice – Zakopane, 241-251 (in Polish).
  • 15. Milcarz T., Fundament K. (2005), Repair of flat steel-rubber balance rope SAG built in the hoist shaft IV N KWK „Sośnica, Proceedings of International Conference „Safety Operation of Mining Transport Equipment” Research and Supervisory Centre of Underground Mining, Lędziny – Szczyrk, 307-313 (in Polish).
  • 16. Olszyna G., Sioma A., Tytko A. (2013), Assessment of the condition of hoisting ropes by measuring their geometric parameters in a three-dimensional image of their surface, Archives of Mining Sciences, 58(3), 643-654.
  • 17. Peng Y.X., Chang X.D., Zhu Z.C., Wang D.G., Gong X.S., Zou S.Y., Sun S.S., Mi Z.T., Xu W.X. (2016), Sliding friction and wear behavior of winding hoisting rope in ultra-deep coal mine under different conditions, Wear, 368, 423-434.
  • 18. Peterka P., Kresak J., Kropuch S., Fedorko G., Molnar V., Vojtko M. (2014), Failure analysis of hoisting steel wire rope, Engineering Failure Analysis, 45, 96-105.
  • 19. PN-EN 12385-2:2008, Steel ropes. Safety. Part 2: Definitions, markings and classification (in Polish).
  • 20. PN-EN 12385-7:2004, Steel ropes. Safety. Part 7: Ropes closed construction for mining shafts (in Polish).
  • 21. Sioma A., Tytko A. (2012), Vision methods for assessing the geometrical parameters of steel ropes, Acta Mechanica et Automatica, 6(1), 63-67.
  • 22. Styp-Rekowski M., Mańka E. (2010), Environmental factors of rope hoisting shaft wear and reliability, Proceedings of Xth International Conference „Tribology and Reliability”, Petersburg State Transport University Publishing, St. Petersburg (Russia), 245-257.
  • 23. Styp-Rekowski M., Mańka E., Matuszewski M., Madej M., Ozimina D. (2015), Tribological problems in shaft hoist ropes wear process, Industrial Lubrication and Tribology, 67(1), 47-51.
  • 24. Wang X.Y., Meng X.B., Wang J.X., Sun Y.H., Gao K. (2015), Mathematical modeling and geometric analysis for wire rope strands, Applied Mathematical Modelling, 39(3-4), 1019-1032.
  • 25. Xu L.M., Zhang D.K., Yin Y., Wang S.Q., Wang D.G. (2014), Fretting wear behaviors of hoisting rope wires in acid medium, Materials & Design, 55, 50-57.
  • 26. Zhang D.K., Feng C.A., Chen K., Wang D.G., Ni X. (2017), Effect of broken wire on bending fatigue characteristics of wire ropes, International Journal of Fatigue, 103, 456-465.
  • 27. Zhang J., Wang D., Zhang D., Ge S.R., Wangb D. (2017), Dynamic torsional characteristics of mine hoisting rope and its internal spiral components, Tribology International, 109, 182-191.
  • 28. Zhao D., Liu S.G., Xu Q.T., Shi F., Sun W.Y., Chai L.Q. (2017), Fatigue life prediction of wire rope based on stress field intensity method, Engineering Failure Analysis, 81, 1-9.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f6da348d-ccd3-4b8f-9239-351cc8b4f889
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