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Pre-designing of a mechatronic system using an analytical approach with Dymola

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents a pre-dimensioning method applied to a mechatronic system and regarding the vibrational aspect, through a simple modeling process in Dymola environment. We study the vibration transmission between dynamic exciters (motors) and receivers (electronic cards) which are located on a simply supported rectangular plate, using an analytical approach. This new method will allow us to perform representative and robust modeling and simulation. The solution for this issue would be a pre-sizing and pre-positioning procedure. It aims to determine a set of possible technical solutions and principal characteristics before the definitive choice of components and precise sizing of the system. The presented method predicts also behaviour of the mechatronic system. In order to validate the model with respect to the finite element method, selected simulation results are presented.
Rocznik
Strony
697--710
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
  • Mechanics Modeling and Production Research Laboratory (LA2MP), National School of Engineers of Sfax (ENIS), Sfax, Tunisia
  • Laboratory of Engineering of the Mechanical Structures and Materials (LISMMA), High Institute of Mechanic of Paris (SUPMECA), Saint-Ouen Cedex, France
autor
  • Laboratory of Engineering of the Mechanical Structures and Materials (LISMMA), High Institute of Mechanic of Paris (SUPMECA), Saint-Ouen Cedex, France
autor
  • Laboratory of Engineering of the Mechanical Structures and Materials (LISMMA), High Institute of Mechanic of Paris (SUPMECA), Saint-Ouen Cedex, France
autor
  • Laboratory of Engineering of the Mechanical Structures and Materials (LISMMA), High Institute of Mechanic of Paris (SUPMECA), Saint-Ouen Cedex, France
autor
  • Mechanics Modeling and Production Research Laboratory (LA2MP), National School of Engineers of Sfax (ENIS), Sfax, Tunisia
autor
  • Mechanics Modeling and Production Research Laboratory (LA2MP), National School of Engineers of Sfax (ENIS), Sfax, Tunisia
autor
  • Mechanics Modeling and Production Research Laboratory (LA2MP), National School of Engineers of Sfax (ENIS), Sfax, Tunisia
Bibliografia
  • 1. Bhaskar K., Sivaram A., 2008, Untruncated infinite series superposition method for accurate flexural analysis of isotropic/orthotropic rectangular plates with arbitrary edge conditions, Composite Structures, 8, 83-92
  • 2. Craig K., Stolfi F., 2002, Teaching control system design through mechatronics: academic and industrial perspectives, Mechatronics, 12, 371-381
  • 3. Elmqvist H., Mattsson S.E., Otter M., 2001, Object-oriented and hybrid modeling in Modelica, Journal Europ´een des Syst`emes Automatis´es, 35, 1-22
  • 4. Hammadi M., Choley J.Y., Penas O., Riv`ere A., 2012a, Multidisciplinary approach for modeling and optimization of road electric vehicles in conceptual design level, Electrical Systems for Aircraft, Railway and Ship Propulsion (ESARS), IEEE, 1-6
  • 5. Hammadi M., Choley J.Y., Penas O., Riv`ere A., Louati J., Haddar M., 2012b, A new multi-criteria indicator for mechatronic system performance evaluation in preliminary design level, 13th International Workshop on Mechatonics, 9th France-Japan and 7th Europe-Asia Congress on Research and Education in Mechatronics (REM), 409-416
  • 6. Lahdenpera M., 1992, Severe environment electronics, Mechatronics, 2, 301-309
  • 7. Laura P.A.A., Duran R., 1975, A note on forced vibrations of a clamped rectangular plate, Journal of Sound and Vibration, 42, 129-135
  • 8. Leissa A.W., 2005, The historical bases of the Rayleigh and Ritz method, Journal of Sound and Vibration, 287, 961-978
  • 9. Liscouët J., Maré J.C., Budinger M., 2012, An integrated methodology for the preliminary design of highly reliable electromechanical actuators: search for architecture solutions, Aerospace Science and Technology, 22, 9-18
  • 10. Mishra S., Pecht M., 2002, Remaining life prediction of electronic products using life consumption monitoring approach, European Microelectronics Packaging and Interconnection Symposuim, Cracow, Poland, 16-18 June.
  • 11. Piersol A.G., Paez T.L., 2010, Harris’ Shock and Vibration Handbook, 6th edition, United States
  • 12. Romanelli E., Laura P.A.A., 2001, Forced transverse vibrations of a simply supported rectangular orthotropic plate in the case where the force acts over a plate subdomain, Ocean Engineering, 28, 1135-1144
  • 13. Schiavo F., Vigano L., Ferretti G., 2006, Object-oriented modeling of flexible beams, Multibody System Dynamics, 15, 3, 263-286
  • 14. Schwartz L., 1951, Theory of Distributions (in French), tome 2, Paris, Hermann 15. Szilard R., 2004, Theories and Applications of Plate Analysis: Classical, Numerical and Engineering Methods, John Wiley & Sons, Inc., New Jersey
  • 16. Tarnowski W., Krzyzynski T., Maciejewski I., Oleskiewicz R., 2011, Poly-optimization: a paradigm in engineering design in mechatronics, Archive of Applied Mechanics, 81, 141-156
  • 17. Ventsel E., Krauthammer T., 2001, Thin Plates and Shells, Theory, Analysis, and Applications, Basel, New York
  • 18. Veprik A.M., Babtisky V.I., 2000, Vibration protection of sensitive electronic equipment from harsh harmonic vibration, Journal of Sound and Vibration, 238, 19-30
  • 19. Vera S.A., Febbo M., Mendez C.G., Paz R., 2005, Vibrations of a plate with an attached two degree of freedom system, Journal of Sound and Vibration, 285, 457-466
  • 20. Wang Y., Yu Y., Xie C., Zhang X., Jiang W., 2013, A proposed approach to mechatronics design education: integrating design methodology, simulation with projects, Mechatronics, 23, 942-948
  • 21. Wei G.W., Zhao Y.B., Xiang Y., 2001, The determination of natural frequencies of rectangular plates with mixed boundary conditions by discrete singular convolution, International Journal of Mechanical Sciences, 43, 1731-1746
  • 22. Wu J.S., Luo S.S., 1997, Use of the analytical and numerical combined method in the free vibration analysis of a rectangular plate with any number of point mass and translational springs, Journal of Sound and Vibration, 200, 179-194
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-024650ca-e398-44b7-856e-6ba9de60b213
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