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Tytuł artykułu

Analysis of Viscoplastic Properties of a Magnetorheological Fluid in a Damper

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of presented paper is a mathematical description and an analysis of viscoplastic properties of a magnetorehological fluid in operational conditions of a damper’s work. The authors considers the possibility of use the viscoplastic law, typically for metals, to describe the behaviour of device with a magnethorheological fluid.
Rocznik
Strony
5--10
Opis fizyczny
Bibliogr. 13 poz., Wykr.
Twórcy
autor
autor
  • Institute of Machine Design Fundamentals, Warsaw University of Technology, ul. Narbutta 84, 00-524 Warszawa, Poland, jba@simr.pw.edu.pl
Bibliografia
  • 1. Bajkowski J. (2005), Research and educational stands for the determination of selected characteristics of a magnetorheological damper or a shock absorber, XXII Sympozium PKM, Gdynia-Jurata, 47-56.
  • 2. Bodner S. R., Partom Y. (1975), Constitutive equations for elasticviscoplastic strain-hardening materials, Journal of Applied Mechanics, Vol. 42, 385-389.
  • 3. Carlson J. D., Weiss K. D. (1994), A growing attraction to magnetic fluids, Machine Design, 61-66.
  • 4. Chan S. C., Bodner S. R., Lindholm U.S. (1988), Phenomenological Modeling of Hardening and Thermal Recover in Metals, J. Eng. Mater. & Tech., Vol. 11, 1-8.
  • 5. Dyke S. J., Spencer B. F., Sain M. K., Carlson J. D. (1996), Modeling and control of magnetorheological dampers for seismic response reduction, Smart Materials and Structures, Vol. 5, No. 5, 565-575.
  • 6. Goncalves F. D. (2005), Characterizing the behavior of magnetorheological fluids at high velocities and high shear rates, PhD thesis, Virginia Polytechnic, Blacksburg.
  • 7. Haake G. S. (1998), Rheology. Fundamentals and applications, Center of Scientific Publications PAN, Poznań.
  • 8. Kłosowski P., Woźnica K. (2007), Non-linear viscoplastic constitutive laws in some structural analysis, Publishing House of Gdansk University of Technology, Gdańsk.
  • 9. Lee U., Kim D., Jeon D. (1999), Design analysis and experimental evaluation of an MR clutch, Journal of Intelligent Materials and Structers, Vol. 10, 701-707.
  • 10. Marquardt D. W. (1963), An algorithm for least square of parameters, Indust. Math., Vol. 11, 431-441.
  • 11. Poynor J. C. (2001), Innovative designs for magneto-rheological dampers, master thesis, Virginia Polytechnic, Blacksburg.
  • 12. Skalski P. (2010), Analysis of viscoplastic properties of a magnetorheological fluid in operational conditions of a dampers work, PhD thesis, Warszawa.
  • 13. Wu W. (2006), Theoretical and experimental study on cable vibration reduction with tmd-mr damper, PhD thesis, Luisiana State University.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0068-0022
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