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Locking the movement of persons on the bridge crane

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This article describes the design of a horizontal rope system for increasing the safety of work and movement on a specific device operating in height. This system is designed to be installed on a conventional existing crane footbridge or crane track structure and this system enables a free pass along the rope, without unclamp of spring hook on prolongation rope. The calculation was made by non-linear dynamic FEM analysis.
Twórcy
autor
  • Technical University of Kosice, Faculty of Mechanical Engineering, Department of Design, Automotive and Transport Engineeing, Letna 9, 042 00 Kosice, Slovak Republic
  • Technical University of Kosice, Faculty of Mechanical Engineering, Department of Design, Automotive and Transport Engineeing, Letna 9, 042 00 Kosice, Slovak Republic
  • Technical University of Kosice, Faculty of Mechanical Engineering, Department of Design, Automotive and Transport Engineeing, Letna 9, 042 00 Kosice, Slovak Republic
  • Technical University of Kosice, Faculty of Mechanical Engineering, Department of Design, Automotive and Transport Engineeing, Letna 9, 042 00 Kosice, Slovak Republic
Bibliografia
  • 1. Boroška J., Hulín J. and Lesňák O. Oceľové laná. Alfa Bratislava, 1982.
  • 2. Boroška J. Činitele ovplyvňujúce životnosť a bezpečnosť prevádzky oceľových lán. In: Výskum, výroba a použitie oceľových lán. KLaVS, Vysoké Tatry - Podbanské 2000, pp. 15-21.
  • 3. Molnár V., Fedorko G., Stehlíková B. and Michalik P. Statistical Comparison of Rope Strands by ANOVA Test and Kruskal Walis Test. Tech. Technol. Educ. Manag., 6, 2011, 1121-1126.
  • 4. Torkar M and Arzenek B. Failure of crane wire rope. Eng. Fail. Anal., 9, 2002, 227-233.
  • 5. Costello G. A. Mechanics of wire rope. Wire J. Int. 36, 2003, 56-63.
  • 6. Chaplin C. R. Failure mechanisms in wire ropes. Engineering Failure Analysis 2, 1995, 45-57.
  • 7. Peterka P., Krešák J., Kropuch S., Fedorko G., Molnar V. and Vojtko M. Failure analysis of hoisting steel wire rope. Eng. Fail. Anal., 45, 2014, 96-105.
  • 8. Torkar M. and Arzenšek B. Failure of crane wire rope. Eng. Fail. Anal., 9(2), 2002, 227-233.
  • 9. Giglio M. and Manes A. Life prediction of a wire rope subjected to axial and bending loads. Eng. Fail. Anal. 12(4), 2005, 549-568.
  • 10. Erdem Imrak C. and Erdönmez C. On the problem of wire rope model generation with axial loading. Math. Comput. Appl., 15(2), 2010, 259-268.
  • 11. Stanova E., Fedorko G., Fabian M. and Kmet S. Computer modelling of wire strands and ropes Part I: Theory and computer implementation. Adv. Eng. Softw. 42, 2011, 305-315.
  • 12. Molnár V., Fedorko G., Krešák J., Peterka P. and Fabianová J. The influence of corrosion on the life of steel ropes and prediction of their decommissioning. Eng. Fail. Anal. 74, 2017, 119-132.
  • 13. Stolle C.S. and Reid J.D. Development of a wire rope model for cable guardrail simulation. Int. J. Crashworthiness 16(3), 2011, 331-341.
  • 14. Nawrocki A. and Labrosse M. A finite element model for simple straight wire rope strands. Comput. Struct. 77(4), 2000, 345-359.
  • 15. Imanishi E., Nanjo T. and Kobayashi T. Dynamic simulation of wire rope with contact. J. Mech. Sci. Technol. 23(4), 2009, 1083-1088.
  • 16. Páczelt I. and Beleznai R. Nonlinear contact theory for analysis of wire rope strand using high order approximation in the FEM. Computers and Structures 89(11-12), 2011, 1004-1025.
  • 17. Rudawska, A. and Debski, H. Experimental and numerical analysis of adhesively bonded aluminium alloy sheets joints. Eksploat. I Niezawodn. Maint. Reliab. 1, 2011, 4-10.
  • 18. Jachowicz T., Gajdos I.: Effect of natural ageing on some properties of oxybiodegrading agent containing polypropylene products. Przemysl Chemiczny, 93 (11), 2014, 1983-1985.
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-044209e5-3f8f-4a25-b1d6-c5d9225c4b7e
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