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This paper presents recent works on temperature effects in hydrodynamic journal bearings. This is an over-view of several specific thermal problems encountered particularly in fixed geometry and tilting-pad journal bearings. The temperature-viscosity variation, the heat transfer, the change in bearing clearance, the thermal and mechanical deformations, the flow regime, the transient regime, the risk of seizure, the dynamic loading as well as the misalignment are successively discussed.
Rocznik
Tom
Strony
441--450
Opis fizyczny
Bibliogr. 25 poz., rys., wykr.
Twórcy
autor
- Universite de Poitiers, Laboratoire de Mecanique des Solides, FRANCE
Bibliografia
- [1] Boncompain R., Fillon M. and Frene J. (1986): Analysis of thermal effects in hydrodynamic bearings. - ASME Journal of Tribology, vol.108, NO.2, pp.219-224.
- [2] Bouard L., Fillon M. and Frene J. (1996): Comparison between three turbulent models - application to thermohydrodynamic performances of tilting-pad journal bearings. - Tribology International, vol.29, NO.1, pp.11-18.
- [3] Bouard L., Fillon M. and Frene J. (1996): Thermohydrodynamic analysis of tilting-pad journal bearings operating in turbulent flow regime. - ASME Journal of Tribology, vol.118, No J, pp.225-231.
- [4] Bouyer J. and Fillon M. (2002): An experimental analysis of the misalignment effects on hydrodynamic plain journal bearing performances. - ASME Journal of Tribology, vol.124, NO.2, pp.313-319.
- [5] Bouyer J. and Fillon M. (2003): Improvement of the THD performance of a misaligned plain journal bearing. - ASME Journal of Tribology, vol.125, NO.2, pp.334-342.
- [6] Dowson D. (1962): A generalized Reynolds equation for fluid film lubrication. - Int. J. Mech. Sc., Pergamon Press Ltd., vol.4, pp.159-170.
- [7] Ferron J., Frene J. and Boncompain R. (1983): A study of the thermohydrodynamic performance of a plain journal bearing - Comparison between theory and experiments. - ASME Journal of Lubrication Technology, vol.105, NO.3, pp.422-428.
- [8] FiIlon M., Bligoud J.C. and Frene J. (1992): Experimental study of tilting-pad journal bearings - Comparison with theoretical thermoelastohydrodynamic results. - ASME Journal of Tribology, vol.114, No.3, pp.579-588.
- [9] Fillon M., Frene J. and Boncompain R. (1985): Etude experimentale de l'effet thermique dans les paliers a patins oscillants. - Proceeding of the 4th European Tribology Congress, EUROTRIB'85, September 9-12, Lyon, Elsevier, vol.1, 4.1.6, pp.1-5.
- [10] Fillon M., Frene J. and Boncompain R. (1987): Historical aspect and resent development on thermal effects in hydrodynamic bearings. - Proceeding of the 13th Leeds-Lyon Symposium on Tribology, Elsevier, pp.27-47.
- [11] Gardner W.W. and Ulschrnid J.G. (1974): Turbulence effects in two journal bearing applications. - ASME Journal of Lubrication Technology, vol.96, No J, pp 15-21.
- [12] Ha H.C., Kim H.J. and Kim K.W. (1995): Inlet pressure effects on the thermohydrodynamic performance of large tilting pad journal bearing. - AS ME Journal of Tribology, vol.117, NO.1, pp.160-165.
- [13] Khonsari M. (1987): A review of thermal effects in hydrodynamic bearings - Part II: Journal bearings. - ASLE Transactions, vol.30, NO.1, pp.26-33.
- [14] Knight J.D. and Barret L.E. (1987): Analysis of axially grooved journal bearings with heat transfer effects. - ASLE Transactions, vol.30, NO.3, pp.316-323.
- [15] Kucinschi B., Fillon M., Pascovici M. and Frene J. (2000): A transient thermoelastohydrodynamic study of steadily loaded plain journal bearings using finite element method analysis. - ASME Journal of Tribology, vol.122, No 1, pp.219-226.
- [16] Monmousseau P., Fillon M. and Frene J. (1997): Transient thermoelastohydrodynamic study of tilting-pad journal bearings - Comparison be twe en experimental data and theoretical results. - ASME Journal of Tribology, vol.119, No.3, pp.401-407.
- [17] Monmousseau P., Fillon M. and Frene J. (1998): Transient thermoelastohydrodynamic study of tilting-pad journal bearings under dynamic loading. - ASME Journal of Engineering for Gas Turbines and Power, vol.120, No.2, pp.405-409.
- [18] Monmousseau P., Fillon M. and Frene J. (2000): Transient thermoelastohydrodynamic analysis for safe operating conditions of a tilting-pad journal bearing during start-up. - Tribology International, vol.33, No.3-4, pp.225-231.
- [19] Pierre I. and Fillon M. (2000): Influence of geometric parameters and operating conditions on thermohydrodynamic behaviour of plain journal bearings. - Proc. of the IME, Journal of Engineering Tribology, Part J, vol.214, No.5, pp.445-457.
- [20] Pierre J., Bouyer J. and Fillon M. (2004): Thermohydrodynamic behavior of misaligned plain journal bearings - Theoretical and experimental approaches. - STLE Tribology Transactions, vol.47, No.4, pp.594-604.
- [21] Pinkus O. (1990): Thermal Aspects of Fluid Film Tribology. - New York: ASME Press.
- [22] Safar Z. and Szeri A.Z. (1974): Thermohydrodynamic lubrication in laminar and turbulent regimes. - ASME Journal of Lubrication Technology, vol.96, No.1, pp.48-56.
- [23] Swanson E.E. and Kirk RG. (1997): Survey of experimental data for fixed geometry hydrodynamic journal bearings. - ASME Journal of Tribology, vol.l119, No.4, pp.704-710.
- [24] Tanaka M. (2000): Recent thermohydrodynamic analyses and designs thick-film bearings. - Proc. of the IME, Journal of Engineering Tribology, Part J, vol.218, No.4, pp.365-377.
- [25] Taniguchi S., Makino T., Takehshita K. and Ichimura T. (1990): A thermohydrodynamic analysis of large tilting-pad journal bearing in laminar and turbulent flow regimes with mixing. - ASME Journal of Tribology, vol.112, No.3, pp.542-548.
Typ dokumentu
Bibliografia
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