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Magnetorheological Damping of a System with a Pendulum Vibration Absorber

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents a numerical study of a nonlinear two-degrees-of-freedom system consisting of the Duffing oscillator with an attached pendulum absorber. The system is excited close to the principal parametric resonance. By applying numerical simulation we show the influence of viscous and a magnetorheological damping (MR) on the vibration absorption effect. The absorber can be highly efficient for slightly damped systems, if it is correctly tuned. A new element in this work is to use the MR damper, modelled with the effect of hysteretic loop in the nonlinear damper.
Rocznik
Strony
49--56
Opis fizyczny
Bibliogr. 15 poz., il., wykr.
Twórcy
autor
  • Lublin University of Technology. Applied Mechanics Department
autor
  • Lublin University of Technology. Applied Mechanics Department
Bibliografia
  • Brzeski, P., Perlikowski, P., Yanchuk, S., Kapitaniak, T., 2012, The dynamics of the pendulum suspended on the forced Duffing oscillator, Journal of Sound and Vibration, 331, 5347-5357.
  • Kęcik, K., 2012, Control of vibration in mechanical system with a pendulum by MR damper (original title in Polish: Zastosowanie tłumika magnetoreologicznego do sterowania drganiami w układzie mechanicznym z wahadłem), Przegląd Elektrotechniczny, 2, 223-226.
  • Kęcik, K., Warmiński, J., 2011, Dynamics of an autoparametric pendulum-like system with a nonlinear semiactive suspension, Mathematical Problems in Engineering, Article ID 451047.
  • Korenev, B. G., Reznikov, L. M., 1993, Dynamic vibration absorbers, theory and technical applications, John Wiley & Sons.
  • Legeza, V. P., 2004, Dynamics of vibroprotective systems with roller dampers of low- frequency vibrations, Strength Material, 36, 2, 185-194.
  • Lin, Ch. J. & Huang, W. G., Huang, H. P., Huang, B. S., Ku Liu, Ch. Ch., 2012, Investigation of array-derived rotation in TAIPEI 101, Journal of Seismology, 731, 16, 721-731.
  • Liu, K., Liu, J., 2005, The damped dynamic vibration absorbers: revisited and new result. Journal of Sound and Vibration, 284, 1181-1189.
  • Murthy, V. R., Hammond, C. E., 1981, Vibration analysis of rotor blades with pendulum absorbers, Journal of Aircraft, 18, 1, 23-29.
  • Nagase, T., Hisatoku, T., 1992, Tuned-pendulum mass damper installed in crystal tower, The Structural Design of Tall Buildings, 1, 1, 35-56.
  • Ostroumov, B. V., 2002, Dynamic damper of vibration in the form of inverted pendulum with damping, Izvestiya Vuzov, 9, 36-38.
  • Sun, J. Q., Jolly, M. R., Norris, M. A., 1995, Passive adaptive and active tuned vibration absorbers - a survey, Transaction of AS ME, 234-242.
  • Warmiński, J., Kęcik, K., 2006, Autoparametric vibrations of a nonlinear system with pendulum, Mathematical Problems in Engineering, Article ID 80705, 1-19.
  • Warmiński, J., Kęcik, K., 2009, Instabilities in the main parametric resonance area of a mechanical system with a pendulum, Journal of Sound Vibration, 332, 612-628.
  • Warmiński, J., Lenci, S., Cartmell, M. P., Rega, R. and Wiercigroch, M., 2012, Nonlinear Dynamic Phenomena in Mechanics, 181.
  • Yousefi, S. M., Heuer, R., 2008, Structural vibration control by means of nonlinear pendulum dampers, Proceedings in Applied Mathematics and Mechanics (PAMM), 8, 10361-10362
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0771e6fd-42f1-4e85-a38d-991b81036e34
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