Open Access
Issue
Mécanique & Industries
Volume 8, Number 1, Janvier-Février 2007
Page(s) 35 - 49
DOI https://doi.org/10.1051/meca:2007020
Published online 21 June 2007
  1. R. Maliha, C.U. Dogruer, H.N. Özgüven, Non-linear dynamic modelling of gear-shaft-disk-bearing systems using finite elements and describing functions, ASME J. Mechanical Design 126 (2004) 534–541 [CrossRef] [Google Scholar]
  2. E. Tanaka, N. Tanaka, K. Ohno, Vibration analysis of a multi-stage gear system including drive mechanism elements, JSME 44 (2001) 307–314 [CrossRef] [Google Scholar]
  3. Y. Cheng, T.C. Lim, Dynamics of Hypoid gear transmission with nonlinear time-varying mesh characteristics, ASME J. mechanical design 125 (2003) 373–382 [Google Scholar]
  4. A. Al-shyyab, A. Kahraman, Non-linear dynamic analysis of a multi-mesh gear train using multi-term harmonic balance method: sub-harmonic motions, J. Sound and Vibration 284 (2005) 417–451 [Google Scholar]
  5. M. Li, L. Yu, Analysis of the coupled lateral torsional vibration of a rotor-bearing system with a misaligned gear coupling, J. Sound and Vibration 243 (2001) 283–300 [Google Scholar]
  6. M. Li, H.Y. Hu, P.L. Jiang, L. Yu, Coupled axial-lateral-torsional dynamics of a rotor-bearing system geared by spur bevel gears, J. Sound and Vibration 254 (2002) 427–446 [Google Scholar]
  7. M. Li, H.Y. Hu, Dynamic analysis of a spiral bevel-geared-rotor-bearing system, J. Sound and Vibration 259 (2003) 605–624 [Google Scholar]
  8. M. Kubur, A. Kahraman, D.M. Zini, K. Kienzle Dynamic Analysis of a multi-shaft helical gear transmission by finite elements: model and experiment, ASME J. Vibration and Acoustics 126 (2004) 398–406 [Google Scholar]
  9. E. Tanaka, H. Houjoh, D Mutoh, H. Motoshiromitzu, K. Ohno, N. Tanaka, Vibration and sound-radiation analysis for designing a low noise gearbox with multi-stage helical gear system, JSME 46 (2003) 1178–1185 [Google Scholar]
  10. B.L. Choi, J.M. Park, An improved rotor model with equivalent dynamic effects of the support structure, J. Sound and Vibration 244 (2001) 569–581 [CrossRef] [Google Scholar]
  11. Y. Kang, Y.P. Chang, J.W. Tsai, L.H. Mu, Y.F. Chang, An investigation in stiffness effects on dynamics of rotor-bearing-foundation systems, J. Sound and Vibration 231 (2000) 343–374 [CrossRef] [Google Scholar]
  12. Y. Cheng, T.C. Lim, Dynamics of Hypoid gear transmission with nonlinear time-varying mesh characteristics, J. Sound and Vibration 240 (2001) 519–543 [CrossRef] [Google Scholar]
  13. E. Rigaud, F. Mayeux, N. Driot, J. Perret-Liaudet, B. Mevel, Variabilité des régimes critiques d'une boîte de vitesses : influence des précharges des roulements, Mécanique & Industries 4 (2003) 107–112 [CrossRef] [Google Scholar]
  14. T.C. Lim, Vibration transmission through rolling element bearing in geared rotor system, Ph.D. Thesis Ohio State University, 1989 [Google Scholar]
  15. P. Dietl, J. Wensing, G.C. van Nijen, Rolling bearing damping for dynamic analysis of multi-body systems – Experimental and theoretical results, J. Multi-body Dynamic 214 (2000) 33–43 [Google Scholar]
  16. D. Remond, P. Velex, J. Sabot, Comportement dynamique et acoustique des transmissions par engrenages, Synthèse bibliographique, Senlis : Publication CETIM, 1993 [Google Scholar]
  17. K. Umezawa, H. Houjoh, N. Ichikawa, S. Matsumura, Simulation of rotational vibration of a helical gear pair transmitting light loads, in Proceedings of the 3rd JSME International Conference on Motion and Power transmissions MPT'91, Hiroshima, Japan, 1991, pp. 85–91 [Google Scholar]
  18. K. Umezawa, H. Houjoh, N. Ichikawa, S. Matsumura, The influence of flank deviations on the vibration of a helical gear pair transmitting light loads, in Proceedings of the 6th ASME International Conference Power Transmissions and gearing, Phoenix 2, 1992, pp. 681–688 [Google Scholar]
  19. S.T. Choi, S.Y. Mau, Dynamic analysis of geared rotor-bearing systems by the transfer matrix method, ASME J. Mechanical Design 123 (2001) 562–568 [CrossRef] [Google Scholar]
  20. F. Peeters, R. Pintelon, J. Schoukens Y. Rolain, E.S. Gutierrez, P. Guillaume, Identification of rotor bearing systems in the frequency domain, Part 1: Estimation of frequency response functions, Mechanical Systems and Signal Processing 15 (2001) 759–773 [CrossRef] [Google Scholar]
  21. F. Peeters, R. Pintelon, J. Schoukens, Y. Rolain, Identification of rotor bearing systems in the frequency domain, Part II: Estimation of modal parameters Mechanical Systems and Signal Processing 15 (2001) 775–788 [Google Scholar]
  22. H.N. Ozguven, On the critical speed of continuous shaft-disk system, ASME J. Vibration, Acoustics, Stress, and Reliability in Design 106 (1984) 59–61 [Google Scholar]
  23. J.S. Rao, Rotor dynamics, John Wiley, New-York, 1983 [Google Scholar]
  24. B. Moon, B.S. Kang Non Linear Vibration analysis of mechanical system (analysis with consideration of non-linear sensitivity), JSME 44 (2001) 12–19. [CrossRef] [Google Scholar]
  25. A. Palmgren, Les roulements descriptions, théorie, applications, SKF 1967, 120 p. [Google Scholar]
  26. E. Krämer, Dynamics of rotors and foundations, Springer Verlag, 1993, 383 p. [Google Scholar]
  27. E.R. Marsh, D.S. Yantek, Experimental measurement of precision bearing dynamic stiffness, J. Sound and Vibration 202 (1997) 55–66 [CrossRef] [Google Scholar]
  28. T.C. Lim, R. Singh Vibration transmission through rolling element bearings. Part I: Bearing stiffness formulation, Part II: System studies, Part III: Gear rotor system studies, J. Sound and Vibrations 139 (1990) [Google Scholar]
  29. J. Perret-Liaudet, Étude des mécanismes de transfert entre l'erreur de transmission et la réponse dynamique des boîtes de vitesses automobiles, Thèse École Centrale de Lyon, 1992 [Google Scholar]
  30. A. Bourdon, Modélisation dynamique globale des boîtes de vitesses automobile, Thèse : Institut National des Sciences Appliquées de Lyon 1997. Disponible en ligne arXiv:http://docinsa.insa-lyon.fr/these/ pont.php?id=bourdon [Google Scholar]
  31. C. Bard, Modélisation du comportement dynamique des transmissions de puissance par engrenages, Thèse : Institut National des Sciences Appliquées de Lyon, 1995 [Google Scholar]
  32. M.D. Rajab, Of the transmissibility through rolling-element bearing under radial and moment loads Modelling, These, Ohio State University, 1982 [Google Scholar]
  33. W.B. Young. Dynamic modelling and experimental measurements of a gear shaft and housing system, These, Ohio State University, 1988 [Google Scholar]
  34. Y. Kang, Y.P. Chang, J.W. Tsai, L.H. Mu, Y.F. Chang, An investigation in stiffness effects on dynamics of rotor-bearing-foundation systems, J. Sound and Vibration 231 (2000) 343–374 [CrossRef] [Google Scholar]
  35. J.M. de Mul, J.M. Vree, D.A. Mass, Equilibrum and associated load distribution in ball and roller bearing in five degrees of freedom while neglecting friction, Part I and II, ASME J. Tribology 111 (1989) 142–155 [CrossRef] [Google Scholar]
  36. A. Bourdon, J.F. Rigal, D. Play, Static rolling bearing models in C.A.D. environment for the study of complex mechanisms, Part I – Rolling bearing model, Part II – Complete assembly model ASME J. Tribology 121 (1999) 205–223 [Google Scholar]
  37. S. Andreason, Load distribution in a taper roller bearing arrangement considering misalignement, Tribology 6 (1973) 84–92 [CrossRef] [Google Scholar]
  38. T.A. Harris, Rolling bearing analysis, 2nd edition, New York: John Wiley & Sons, 1984 [Google Scholar]
  39. T.A. Harris, The effect of misalignement on the fatigue life of a cylindrical roller bearing having crowned roller members, ASME J. Lubrification Technology (1969) 294–300 [Google Scholar]
  40. J.Y. Liu, The effect of misalignement on the life of high speed cylindrical roller bearings, ASME J. Lubrification Technology (January 1970) 129–137 [Google Scholar]
  41. J.Y Liu, Y.P. Chiu, Analysis of a thin elastic ring under arbitrary loading, ASME J. Engineering for Industry (August 1974) 870–876 [Google Scholar]
  42. X. Hernot, M. Sartor, J. Guillot, Calculation of the stiffness matrix of angular contact ball bearings by using the analytical approach, ASME J. Mechanical Design 122 (2000) 83–90 [CrossRef] [Google Scholar]
  43. A.B. Jones, J.M. Mc Grew, Rotor bearings dynamic technology design Guide: Part II, Ball bearings, Wright Patterson, Ohio, USA: Air Force Aero Propulsion Laboratory, AFAPL-TR-78-6 1978 [Google Scholar]
  44. A.B. Jones, J.M. Mc Grew, Rotor bearings dynamic technology design Guide: part III Tapered roller bearings, Wright Patterson, Ohio, USA: Air Force Aero Propulsion Laboratory, AFAPL-TR-78-6, 1979, 80 p. [Google Scholar]
  45. A.B. Jones, J.M. Mc Grew, Rotor bearings dynamic technology design Guide: part IV, cylindrical roller bearing, Wright Patterson, Ohio, USA: Air Force Aero Propulsion Laboratory, AFAPL-TR-78-6, 1979, 61 p. [Google Scholar]
  46. L. Houpert, Prediction of bearing, gear and housing performances. Rolling Bearing Practice Today seminar, I. Mech. E. London, 1995 [Google Scholar]
  47. A. Bourdon, K. Yakhou, L. Chaloyrad, D. Play, Influence of the mechanical architecture and coupling effects on the vibratory behavior of complex gear transmission, in Proceedings of DETC99: 1999 ASME Design Engineering Technical Conferences, September 12–15, 1999, Las Vegas, Nevada [Google Scholar]
  48. K. Yakhou, A. Bourdon, D. Play Prediction of Automotive Gearboxes Dynamic Behavior, Part A: Experimental Validation of a Global Numerical Model, in proceeding of DETC2000/PTG-14428, 8th International ASME Power Transmission and Gearing Conference, September 10–13, 2000, Baltimore [Google Scholar]
  49. A. Bourdon, K. Yakhou, D. Play, Prediction of Automotive Gearboxes Dynamic Behavior, Part B : Numerical Simulations for the Determination of New Mechanical Design Trends, in proceeding of DETC2000/PTG-14427, 8th International ASME Power Transmission and Gearing Conference, September 10–13, 2000, Baltimore [Google Scholar]
  50. K. Yakhou, Analyse des matrices de rigidité des paliers à roulements, mémoire de DEA, INSA de Lyon, Laboratoire CASM, 1995 [Google Scholar]
  51. A. Girad, Modal effective mass models in structural dynamics, in proceeding of: Xth International Modal Analysis Conference, San Diego USA (IMAC), 1992 [Google Scholar]
  52. A. Bourdon, J.F. Rigal, D. Play, Numerical modal result processings using CAD for analysing global vibrating behavior of gearboxes, in Proceedings of the International Congress of Gear Transmissions'95, Iftom-Eurotrans, Sophia, 2, 1995, pp. 104–110 [Google Scholar]
  53. B. Mevel, Comportement dynamique des roulements a billes, Thèse : Institut National des Sciences Appliquées de Lyon, 1992 [Google Scholar]

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