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Simulation tests of roll-over protection structure

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Structures which protect operators of heavy equipment are important elements found on different types of machines used in construction and mining. Their use is intended to protect the operators from injuries caused by vehicle rollovers. Such structures may be an integral part of the cabin or an external structure outside the cabin. This paper presents the methodology of conducting strength tests for protection structures which uses numerical methods.
Rocznik
Strony
57--63
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr.
Twórcy
  • Institute of Machine Design and Operation, Wrocław University of Technology, 50-371 Wrocław, ul. I. Łukasiewicza 7/9, Poland
autor
  • Institute of Machine Design and Operation, Wrocław University of Technology, 50-371 Wrocław, ul. I. Łukasiewicza 7/9, Poland
autor
  • Institute of Machine Design and Operation, Wrocław University of Technology, 50-371 Wrocław, ul. I. Łukasiewicza 7/9, Poland
Bibliografia
  • [1] B. Clark, N. Perera, D. Thambiratnam, Enhancing the impact energy absorption in roll over protective structures, International Journal of Crashworthiness 13 (2) (2008) (Taylor & Francis Ltd.).
  • [2] B. Clark, N. Perera, D. Thambiratnam, Safety enhancement of operator protection systems on self-propelled mining equipment, Australasian Mine Safety Journal 3 (5) (2011).
  • [3] H. Dębski, G. Koszałka, M. Ferdynus, Application of FEM in the analysis of the structure of a trailer supporting frame with variable operations parameters, Eksploatacja i Niezawodność - Maintenance and Reliability 14 (2) (2012).
  • [4] J. Gere, B. Goodno, Mechanics of Materials, seventh ed., Cengage Learning, Stamford, 2009 (SI edition).
  • [5] Z. Gronostajski, Analysis of torsion test by the finite element method, Informatyka w Informatyka w Technologii Materiałów T. 2 (2–3) (2002).
  • [6] J. Karliński, E. Rusiński, D. Derlukiewicz, Numerical crash-test simulation of the protection structure in the mining machines, Przegląd Mechniczny (4) (2007).
  • [7] J. Karliński, E. Rusiński, T. Smolnicki, Protective structures for construction and mining machine operators, Automation in Construction 17 (3) (2008).
  • [8] M. Kowalczyk, T. Smolnicki, M. Stańco, Selected aspects of framework design using FEM, Transport Przemysłowy (2) (2008).
  • [9] Mine Master, Face Master 2.3 Twin Boom Drilling Rig, 25.01.2010.
  • [10] PN-EN ISO 3471:2009, Earth-Moving Machinery. Roll-Over Protection Structures. Laboratory Tests and Performance, 25.08.2009.
  • [11] E. Rusiński, J. Czmochowski, T. Smolnicki, Advanced finie element method for load-carrying structures of machines, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław (2000).
  • [12] E. Rusiński, S. Dragan, P. Moczko, D. Pietrusiak, Implementation of experimental method of determining modal characteristics of surface mining machinery in the modernization of the excavating unit, Archives of Civil and Mechanical Engineering 12 (4) (2012).
  • [13] E. Rusiński, T. Smolnicki, J. Karliński, Examination of protective cabins safety in mining machines, Przegląd Mechaniczny (15) (1998).
  • [14] E. Rusiński, Finite elements method Cosmos /M, Wydawnictwo Komunikacji i Łączności, Warszawa (1994).
  • [15] G. Wang, C. Chen, Y. Zhang, Y. Zhang, J. Si, Effect of lateral stiffness coefficient of leader ROPS on human injury in a lateral rollover incident, Biosystems Engineering 113 (2) (2012).
  • [16] O. Zienkiewicz, R. Taylor, fourth ed., The Finie Element Method, vols. 1 and 2, McGraw-Hill, England, 1991.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e8d3670c-685b-470b-a224-4a9a7f5fe719
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