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Reliability analysis of crane lifting mechanism

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper focuses on a reliability analysis of various structural variants of a crane lifting mechanism. The reliability of such a mechanism is a basic requisite for the safe operation of the crane as a whole. The article analyses and jointly evaluates structural solutions for the lifting mechanism in a bridge crane, in order to emphasize the technical aspects of system reliability in this context.
Rocznik
Tom
Strony
15--26
Opis fizyczny
Bibliogr. 32 poz.
Twórcy
  • Faculty of Mechanical Engineering, Technical University of Košice, Letná 9 Street, 042 00 Košice, Slovak Republic
autor
  • Faculty of Mechanical Engineering, Technical University of Košice, Letná 9 Street, 042 00 Košice, Slovak Republic
autor
  • Faculty of Mechanical Engineering, Technical University of Košice, Letná 9 Street, 042 00 Košice, Slovak Republic
autor
  • Faculty of Mechanical Engineering, Technical University of Košice, Letná 9 Street, 042 00 Košice, Slovak Republic
Bibliografia
  • 1. Ditlevsen O., H.O Madsen. 1996. Structural Reliability Methods. Chichester: John Wiley & Sons Ltd. ISBN 0 471 96086 1.
  • 2. Bigoš Peter, Ján Pidany. 1987. Prevádzková spoľahlivosť. [In Slovak: Operational Reliability.] Bratislava: Alfa. ISBN 80-05-000-97-8.
  • 3. Bukoveczky Juraj.1982. Prevádzková spoľahlivosť a životnosť stavebných strojov. [In Slovak: Operational Reliability and Durability of Building Machines.] Bratislava: ES SVŠT, Alfa. ISBN 80-05-001-59-4.
  • 4. Fosgerau Mogens, Anders Karlström. 2010. “The value of reliability”. Transportation Research Part B Methodological 44(1): 38-49. ISSN 0191-2615. DOI: 10.1016/j.trb.2009.05.002.
  • 5. Heng Aiwina, Andy C.C. Tan, Joseph Mathew, Neil Montgomery, Dragan Banjevic, Andrew K.S. Jardine. 2009. “Intelligent condition-based prediction of machinery reliability”. Mechanical Systems and Signal Processing 3(5): 1600-1614. ISSN 0888- 3270. DOI: 10.1016/j.ymssp.2008.12.006.
  • 6. Pai Ping-Feng. 2006. “System reliability forecasting by support vector machines with genetic algorithms”. Mathematical and Computer Modelling 43(3-4): 262-274. ISSN: 0895-7177. DOI: 10.1016/j.mcm.2005.02.008.
  • 7. O’Conor Patrick P., Andre Kleyner. 2012. Practical Reliability Engineering. New Delhi: John Wiley & Sons Ltd. ISBN 978-0-470-97982-2.
  • 8. Fabian Stanislav, Ľuboslav Straka. 2007. Teória spoľahlivosti výrobkov a systémov v aplikačných príkladoch. [In Slovak: Theory of Reliability of Products and Systems in Application Examples.] Košice: FVT TU. ISBN 978-80-553-1670-4.
  • 9. Starý Ivan, Libor Obruča.1991. Teorie spolehlivosti. [In Slovak: Theory of Reliability.] Prague: ES ČVUT. ISBN 978-80-564-1677-5.
  • 10. Atiq Waliullah Siddiqui, Mohamed Ben-Daya. 2009. “Reliability centered maintenance”. In M. Ben-Daya, S.O. Duffuaa, A. Raouf, J. Knezevic, D. Ait-Kadi, eds., Handbook of Maintenance Management and Engineering: 397-415. London: Springer. ISBN 978-1- 84-882-471-3.
  • 11. Smith David. 2005. Reliability, Maintainability and Risk. Amsterdam: Elsevier. ISBN 9780750666947.
  • 12. Herczner Peter, Alena Pauliková. 2011. “Koncepcia hodnotenia strojárskych prevádzok”. [In Slovak: “Engineering concept assessment”.] Strojárstvo 15, (11): 111-112, ISSN 1335-2938.
  • 13. Pauliková Alena. 2007. “Dynamical systems with parameters of working environment”. In Environmentálne inžinierstvo a manažérstvo, 215-218. Košice: Faculty of Mechanical Engineering TUKE. ISBN 978-8-080-73894-5.
  • 14. Baran Peter, Robert Grega. 2015. “Comparison of dynamic properties of dual mass flywheel.” Diagnostyka 16 (1): 29-33. ISSN 1641-6414
  • 15. Grega, Robert, Jozef Krajňák, Lucia Žuľová, Gabriel Fedorko, Vieroslav Molnár. 2017. “Failure analysis of driveshaft of truck body caused by vibrations”. Engineering Failure Analysis 79 (1): 208-215. ISSN: 1350-6307.
  • 16. Cveticanin L. 1995. “Dynamic behaviour of the lifting crane mechanism”. Mechanism and Machine Theory 30 (1): 141-151. ISSN 0094-114X. DOI: 10.1016/0094- 114X(94)00045-M.
  • 17. Olearczyk J., A. Bouferguène, M. Al-Hussein, U. Hermann. 2014. “Automating motion trajectory of crane-lifted loads”. Automation in Construction 45: 178-186. ISSN: 0926- 5805. DOI: 10.1016/j.autcon.2014.06.001.
  • 18. Pan Yang, Chengji Liang, Lei Liu. 2011. “The modeling of main hoist mechanism of quay container crane”. In Fourth International Conference on Information Management, Innovation Management and Industrial Engineering (ICIII): 377-381. Shenzhen, China. 26-27 November 2011. ISBN: 978-1-61284-450-3.
  • 19. Wang Ai Hong, Ge Ning Xu , You Shan Gao, Ping Yang. 2010. “Bridge crane load spectrum distribution good-of-fit testing”. Applied Mechanics and Materials 20-23: 512- 517. ISSN 1662-7482. DOI: 10.4028/www.scientific.net/AMM.20-23.512.
  • 20. Wang Ai Hong, Ge Ning Xu , You Shan Gao. 2011. “Bridge crane load distribution fitting and test”. Jixie Qiangdu/Journal of Mechanical Strength 33: 105-112. ISSN: 1001-9669.
  • 21. Zhi-mei Chen, Meng Meng Wen-jun, Zhang Jing-Gang. 2012. “Intelligent anti-swing control for bridge crane”. Journal of Central South University 19 (10): 2774-2781. ISSN 2095-2899. DOI: 10.1007/s11771-012-1341-6.
  • 22. Dietrich von Berg. 1989. Krane und Kranbahnen. [In German: Cranes and Crane Runways.] Stuttgart: B.G. Teubner. ISBN 978-3-322-96767-1.
  • 23. Bigoš Peter. 1987. Dynamická pevnosť a životnosť. [In Slovak: Dynamical Strength and Durability.] Bratislava: Alfa. ISBN 978-80-553-0623-7.
  • 24. Bigoš Peter, Eva Faltinová. 2011. Spoľahlivosť technických systémov. [In Slovak: Reliability of Technical Systems.] Košice: Edícia vedeckej a odbornej literatúry, TU Košice. ISBN 978-80-553-0802-9.
  • 25. Kitschke Erwin. 1983. Wahrscheinlichkeits Theoretische Methoden zur Ermittlung der Zuverlässigkeits Kenngrossen von Mechanischer Systeme auf der Grundlage der statistischen Beschreibung des Ausfallverhaltens von Komponenten. [In German: Probability Theoretical Methods for the Determination of the Reliability Characteristics of Mechanical Systems on the Basis of the Statistical Description of the Failure Behaviour of Components.] Bochum: RUHR-Universität. ISBN 978-80-334-0705-5.
  • 26. Izrael Gregor, Ladislav Gulan. 2014. “Vplyv pracovného zaťaženia na životnosť nakladača”. [In Slovak: “Effect of workload on loader lifespan”.] Stavební technika 13: 24-26. ISSN: 1214-6188.
  • 27. Izrael, Gregor, Juraj Bukoveczky, Ladislav Gulan. 2011. “Influence of nonstandard loads onto life of chosen modules of mobile working machines”. Machine Design 3: 13-16. ISSN: 1821-1259.
  • 28. Gąska Damian, Tomasz Haniszewski, Jerzy Margielewicz. 2017. “I-beam girders dimensioning with numerical modelling of local stresses in wheel-supporting flanges”. Mechanika 23(3): 347-352. ISSN 1392-1207.
  • 29. Gąska Damian, Czesław Pypno. 2011. “Strength and elastic stability of cranes in aspect of new and old design standards”. Mechanika 17(3): 226-231. ISSN 1392-1207.
  • 30. Wittek Adam Marek, Damian Gąska, Bogusław Łazarz, Tomasz Matyja. 2014. “Automotive stabilizer bar – stabilizer bar strength calculations using FEM, ovalization of radial areas of tubular stabilizer bars”. Mechanika 20(6): 535-542. ISSN 1392-1207.
  • 31. Kosicka E., E. Kozlowski, D. Mazurkiewicz. 2015. „The use of stationary tests for analysis of monitored residual pro cesses”. Eksploatacja I Niezawodnosc-Maintenance And Reliability 17(4): 604-609. ISSN 1507-2711.
  • 32. Mazurkiewicz D. 2014. „Computer-aided maintenance and reliability management systems for conveyor belts”. Eksploatacja I Niezawodnosc-Maintenance And Reliability 16(3): 377-382. ISSN 1507-2711.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fa29aaec-2821-45dc-b581-079183296912
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