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Thermohydrodynamic study of misaligned plain journal bearings - comparison between experimental data and theoretical results

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Hydrodynamic journal bearings are essential components of high speed machinery. Under severe operating conditions, manufacturing defects or thermal distortions may induce running problems such as misalignment. The aim of this paper is to present a realistic numerical model in order to predict the misaligned plain journal bearing performance under steady-state conditions. Therefore, a three-dimensional thermohydrodynamic (THD) analysis has been developed and the predictions obtained with the proposed numerical model are validated by comparison with measurements carried out on our test device.
Rocznik
Strony
949--960
Opis fizyczny
Bibliogr. 13 poz., tab., wykr.
Twórcy
autor
  • University of Poitiers, UMR CNRS 6610, Laboratory of Solid Mechanics SP2MI, BP 30179, Bd Pierre et Marie Curie 86962 Futuroscope Chasseneuil Cedex, FRANCE
autor
  • University of Poitiers, UMR CNRS 6610, Laboratory of Solid Mechanics SP2MI, BP 30179, Bd Pierre et Marie Curie 86962 Futuroscope Chasseneuil Cedex, FRANCE
autor
  • University of Poitiers, UMR CNRS 6610, Laboratory of Solid Mechanics SP2MI, BP 30179, Bd Pierre et Marie Curie 86962 Futuroscope Chasseneuil Cedex, FRANCE
Bibliografia
  • [1] Arumugam P., Swarnamani S. and Prabhu B.S. (1997): An experimental investigation on static and dynamic characteristics of journal bearings under the influence of twisting misalignment. - ASME Journal of Tribology, vol.119, pp.188-192.
  • [2] Boncompain R., Fillon M. and Frene J. (1986): Analysis of thermal effects in hydrodynamic bearings. - ASME Journal of Tribology, vol.108, pp.219-224.
  • [3] Dubois G.B., Mabie H.H. and Ocvirk F.W. (1951): Experimental investigation of oil pressure distribution for misaligned plain bearings. - NACA, Tech. Note 2507.
  • [4] Elrod H.G. (1981): A cavitation algorithm. - ASME Journal of Lubrication Technology, vol.103, No.3, pp.350-354.
  • [5] 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, pp.422-428.
  • [6] Huber M., Strzelecki S. and Steinhilper W. (1998): Theoretical and experimental determination of the performance of misaligned and statically loaded cylindrical journal bearings. - Austrib’98, December 6-9, 1998, Brisbane, Australia, pp.243-248.
  • [7] Khonsari M.M. and Beaman J.J. (1986): Thermohydrodynamic analysis of laminar incompressible journal bearings. - ASLE Transactions, vol.29, No.2, pp. 141-150.
  • [8] Ma M.T. and Taylor C. (1992): A theoretical and experimental study of thermal effects in a plain circular steadily loaded journal bearing., In: Procedings of ImechE Seminar on Plain Bearings - Energy Efficiency and Design. - Mechanical Engineering Publications, London, pp.31-44.
  • [9] Monmousseau P., Fillon M. and Frene J. (1997): Transient thermoelastohydrodynamic study of tilting-pad journal bearings — comparison between experimental data and theoretical results. - ASME Journal of Tribology, vol.l 19, No.3, pp.401-407.
  • [10] Paranjpe R.S. and Han T. (1994): A study of the thermohydrodynamic performance of steadily loaded journal bearings. - Tribology Transactions, vol.37, No.4, pp.679-690.
  • [11] Pierre I. (2000): Etude tridimensionnelle des effets thermohydrodynamiques dans les paliers alignes et nesalignes. - PhD Thesis, University of Poitiers.
  • [12] Safar Z.S., Mokhtar M.O. and Peeken H.J. (1985): Thermal characteristics of misaligned finite journal bearings. - Tribology International, vol.l8, No.l, pp.13-16.
  • [13] Tieu A.K. and Qiu Z.L. (1996): Experimental study of freely alignable journal bearings. Part 1: Static characteristics. - ASME Journal of Tribology, vol. 118, pp.498-502.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0001-0048
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