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Modelling, Researches and Analysis of Magnetorheological Dampers in Orthopedic Stabilizers

Identyfikatory
Warianty tytułu
Konferencja
French-Polish Seminar of Mechanics (19 ; 8-11.06. 2011 ; Perpignan, France)
Języki publikacji
EN
Abstrakty
EN
The paper discusses the process of modeling, laboratory research and analysis of the possible application fields for the magnetorheological (MR) dampers, especially controlling the damping force in the orthopedic stabilizer. The research program included obtaining the values of the temperature, magnetic flux density, displacement and forces as a time dependent functions. The analysis confirmed the possibility of applying the MR dampers as a useful devices, which can increase the orthopedic stabilizers efficiency.
Słowa kluczowe
Rocznik
Strony
29--50
Opis fizyczny
Bibliogr. 18 poz., il., wykr.
Twórcy
autor
autor
autor
autor
  • Warsaw University of Technology. Institute of Machine Design Fundamentals, Warsaw, Poland, jba@simr.pw.edu.pl
Bibliografia
  • Bajkowski, J., Choromański, W., Deszczyński, J., Dobrzyński, G., Kowara, J., Winiarski, A., 2011, Modelling, analisys and application of magnetorheological fluid and devices in the ankle stabilizer (in Polish), Mat. XVIII Konferencji nt „Metody i Środki Projektowania Wspomaganego Komputerowo", Baranów.
  • Bajkowski, J., 2002, Research stands for a determining selected characteristics of a magnetorheological damper or a shock absorber (in Polish), XXII Sympozjon PKM, Gdynia-Jurata.
  • Bajkowski, J., 2004, Modeling, mathematical description, simulation and experimental research of magnetorheological damper with influence of temperature, Machine Dynamic Problems, 28, No 3, 9-15.
  • Bajkowski, J., Zalewski, R., 2008, Some problems connected with designing of magnetorheological fluids and dampers, Transactions of the VSB - Technical University of Ostrava, Metallurgical Series, 1, 172-179.
  • Constantinescu, V. N., 1995, Laminar viscous flow, Springer, New York.
  • Dobrzyński, G., Skawiński, P., 2003, Solid and surface modeling using reverse engineering (in Polish), Mat. konf. Metody i Środki Projektowania Wspomaganego Komputerowo, Warszawa, 130-136.
  • Gągorowski, A., 2009, Recherches of the MR damper as the chassis element (in Polish). Prace Naukowe Politechniki Warszawskiej, Transport, Z. 71, Warszawa, 43-56.
  • Górecki, A., Kuś, W. M., 1985, Outline of the anatomy and mechanics of the knee joint (in Polish), Sport Wyczynowy.
  • Jasińska-Choromańska, D., 2000, Modeling and simulation in the design of orthopedic unilateral external stabilizers (in Polish), Rozprawa habilitacyjna, PW, Warszawa.
  • Jolly, M. R., Bender, J. W., Carlson, J. D., 1998, Properties and Applications of Commercial Magnetorheological Fluids, Proc. SPIE 5th Annual Int. Symposium on Smart Structures and Materials, San Diego, CA.
  • Lai, C. Y., Liao, W. H., 2002, Vibration Control of a Suspension System via a Magnetorheological Fluid Damper, Journal of Vibration and Control, 8, 527-547, Sage Publications.
  • Milecki, A., 2010, Electro- and magnetorheological fluids and their applications in engineering (in Polish), WPP, Poznań.
  • Skalski, 2011, Analysis of visco-elastic properties of magnetorheological fluid in the operating conditions of the damper (in Polish), PhD thesis, Warszawa.
  • Skalski, P., Bajkowski, J., Woźnica, K., 2010, MR Fluid Analysis in a Magnetorheological Damper, Machine Dynamics Research, 34, No 4, 96-101.
  • Spencer, B. F., Dyke, S. J., Sain, M. K. and Carlson, J. D., 1996, Phenomenological Model of a Magnetorheological Damper, ASCE Journal of Engineering Mechanics, 123:230-238.
  • Wen, Y. K., 1976, Method of Random Vibration of Hysteretic Systems, Journal of Engineering Mechanics Division, ASCE, 102, No EM2, 249-263.
  • Zalewski, R., Bajkowski, J., 2007, Visco-elastic constitutive law for granular structures in special conditions (in Polish), I Kongres Mechaniki Polskiej, Warszawa.
  • Scietific Research Report NCBiR, 2011, Modelling, kinematic, dynamie, thermal and magnetic analysis, construction, developement and researches of the prototypes of knee, ankle, and elbow joints stabilizers, with intelligent magnetorheological devices (in Polish)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA0-0054-0012
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