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Dynamic behavior of a rotor supported by angular ball bearings

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The wide range and large scale usage of rolling bearings indicates their necessity and vital contribution to the performance of modern industries. In this paper, a non linear model, predicting mechanical behavior of the loaded angular ball bearing, have been developed. The dynamic behavior of a rotor supported by two angular ball bearings is analyzed. The finite element method is used and the rotor is decritizied on beam elements. A mathematical modal taking account different sources of non linearity: the Hertzian contact force and the action of all balls on the bearings inner races, is developed. The Newmark algorithm coupled with Newton Raphson iterative method is used to solve the non linear differential equation iteratively.
Czasopismo
Rocznik
Tom
Strony
3--8
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
autor
autor
autor
autor
  • Unité de Dynamique des Systemes Mécaniques, Ecole Nationale d'Ingénieurs de Sfax, BP. 1173- 3038 Sfax, Tunisie, ms_abbes@yahoo.fr
Bibliografia
  • [1] STRIBECK R.: Ball bearing for various loads, trans of ASME (1907) 420-463.
  • [2] PALMGREN A.: Ball and roller bearings engineering, Burbank, Philadelphia, 1959.
  • [3] JONES A. B.: A general theory for elastically constrained ball and radial roller bearings under arbitrary load and speed conditions, (trans of ASME), Journal of Basic Engineering, 1960, Vol. 82 pp 309-320.
  • [4] WHILE M. F.: Rolling element bearing vibration transfer characteristics: effects of stiffness, (trans of ASME), Journal of applied Mechanics, 1979, Vol. 46 pp 677-684.
  • [5] GUPTA P. K.: Advanced Dynamics of Rolling Elements, Springer-Verlag, New York Inc, 1984.
  • [6] WARDLE F. P.: Vibrations forces produced by waviness of the rolling surfaces of thrust loaded ball bearing. Part I: Theory, Proceedings of the Institute of Mechanical Engineers, 1988, Vol. 202 pp 305-312.
  • [7] Lim T. C., Singh R.: Vibration transmission through rolling element bearings. Part I: Bearing stiffness formulation, Journal of Sound and Vibration, 1990, Vol. 139, No.2, pp 179-199.
  • [8] YHLAND E.: A linear theory of vibrations caused by ball bearings with form errors operating at moderate speed, (trans of ASME), Journal of tribology. 1992, Vol. 114, pp 348-359.
  • [9] Houpert L.: Prediction of bearing, gear and housing performances, Rolling bearing practice today seminar. I, (1995) Mech.E.London. 30.
  • [10] Datta J., Farhang K.: A nonlinear model for structural vibration in rolling element bearings. Part I: Derivation of governing equations, (trans of ASME), Journal of tribology, 1997,.Vol. 119 pp 126-131.
  • [11] Akturk N.: The effect of waviness on vibrations associated with ball bearings, (trans of ASME), Journal of tribology, 1997, Vol. 119 pp 747-753.
  • [12] LAHMAR F.: Interaction entre la dynamique de l’engrènement et les paliers à roulement, (2000), Thèse de Doctorat, Institut Nationale des Sciences Appliquées de Lyon.
  • [13] JEANG S. W., JANG G.: Nonlinear excitation model of ball bearing waviness in a rigid rotor supported by two or more ball bearings considering five degrees of freedom, (trans of ASME), Journal of Tribology, 2002, Vol. 124, pp 82 - 90.
  • [14] JEANG S. W., JANG G.: Vibration analysis of a rotating system due to the effect of ball bearing waviness, Journal of sound and vibration, 2004, Vol. 726, pp 269 - 709.
  • [15] NELIAS D.: Contribution à l’étude des roulements. Modélisation globale des roulements et avaries superficielles dans les contacts EHD pour des surfaces réelles ou indentées (1999), Dossier d’habilitation à diriger des recherches, Institut Nationale des Sciences Appliquées de Lyon.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAR0-0044-0001
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