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Analysis of the Tightening Process of an Asymmetrical Multi-Bolted Connection

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with modelling and calculations of a multi-bolted connection characterized by an asymmetric arrangement of bolts. Equations of system equilibrium on the preloading stage of the connection are described. The iterative algorithm of the computational process is presented, which is related to both nonlinearity of spring elements used for modelling of the contact layer between joined elements and one-sidedness of constraints imposed on the connection. Results of calculations of the selected multi-bolted connection are presented.
Rocznik
Strony
25--32
Opis fizyczny
Bibliogr. 17 poz., il.
Twórcy
autor
  • Department of Mechanics and Fundamentals of Machine Design West Pomeranian University of Technology, Szczecin
Bibliografia
  • 1. Bai, Rui and Chan, Siu-Lai and Hao, Ji-Ping (2015). Improved design of extended end-plate connection allowing for prying effects. Journal of Constructional Steel Research, 113:13–27.
  • 2. Chakherlou, TN and Oskouei, RH and Vogwell, Jeffrey (2008). Experimental and numerical investigation of the effect of clamping force on the fatigue behaviour of bolted plates. Engineering Failure Analysis, 15(5):563–574.
  • 3. Croccolo, D and De Agostinis, M and Vincenzi, N (2011). Failure analysis of bolted joints: Effect of friction coefficients in torque–preloading relationship. Engineering Failure Analysis, 18(1):364–373.
  • 4. Feldmann, Markus and Naumes, Johannes and Pak, Daniel (2011). Loaddeformation behaviour of preloaded bolts in ring flange connections with bridged gaps with regard to a fatigue behaviour prediction. STAHLBAU, 80(1):21–29.
  • 5. Grzejda, RAFAŁ (2013). Determination of bolt forces for the assembly condition of a bolted flange connection. Archives of Mechanical Technology and Automation, 33(2):3–12.
  • 6. Grzejda, RAFAŁ (2014). FE-Modeling of bolts in the flange joint assembling phase condition (in Polish). Mechanik, 87(8-9):672–675.
  • 7. Grzejda, R and Cieloszyk, J (2014). Determination of normal flexibility characteristics of surfaces’ contact with the specified surface texture (in Polish). Bulletin of the Military University of Technology, 63(3):175–187.
  • 8. He, Zhen and Wang, Qingli (2015). The study of bolt up sequence influence of the bolted assembly structure contact stiffness. In Proc. of the 2015 International Conference on Intelligent Systems Research and Mechatronics Engineering, pages 1627–1630.
  • 9. Kumakura, Susumu and Saito, Kumiko (2003). Tightening sequence for bolted flange joint assembly. In ASME 2003 Pressure Vessels and Piping Conference, pages 9–16. American Society of Mechanical Engineers.
  • 10. Lener, Gerhard and Schweigkofler, Hermann (2011). Effects of imperfect ring flange connections on the fatigue resistance of cylindrical columns. STAHLBAU, 80(5):347–355.
  • 11. Magnucki, K and Sekulski, Z (2005). Effective design of a bolted flanged joint with a flat ring gasket. Archive of Mechanical Engineering, 52(3):267–281.
  • 12. Marshall, MB and Lewis, R and Dwyer-Joyce, RS (2006). Characterisation of contact pressure distribution in bolted joints. Strain, 42(1):31–43.
  • 13. Osiński, Zbigniew and Bajon, Wiesław and Szucki, Tadeusz (2010). Podstawy konstrukcji maszyn. Panstwowe Wydawnictwo Naukowe.
  • 14. Skoć, A and Spałek, J and Markusik, S (2012). Podstawy konstrukcji maszyn. Wydawnictwo Naukowo-Techniczne, Warszawa.
  • 15. Szmidla, Janusz and Jurczynska, Anna (2014). Free vibrations and stability of geometrically non-linear column loaded by a force directed towards a positive pole partially lying on Winkler elastic foundation. Machine Dynamics Research, 38(2):59–68.
  • 16. Szopa, T. (2013). Podstawy Konstrukcji Maszyn. Wybrane Problemy Projektowania Typowych Zespołów Urządzeń Mechanicznych. Publishing House of the Warsaw University of Technology, Warszawa.
  • 17. Williams, JG and Anley, RE and Nash, DH and Gray, TGF (2009). Analysis of externally loaded bolted joints: Analytical, computational and experimental study. International Journal of Pressure Vessels and Piping, 86(7):420–427.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4d5a7185-f856-4cce-aab7-62c50041a54f
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