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Original Articles

An Approximate Solution Technique for Multilobe Journal Bearings Including Thermal Effects, with Comparison to Experiment

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Pages 501-508 | Published online: 25 Mar 2008

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Read on this site (10)

Benyebka Bou-Saïd. (2001) La méthode des éléments finis en lubrification Une revue bibliographique. Revue Européenne des Éléments Finis 10:6-7, pages 637-652.
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CarmenM. Müller-Karger, LloydE. Barrett & RonaldD. Flack. (1997) Influence of Fluid Film Nonlinearity on the Experimental Determination of Dynamic Stiffness and Damping Coefficients for Three-Lobe Journal Bearings©. Tribology Transactions 40:1, pages 49-56.
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GregoryJ. Kostrzewsky, RonaldD. Flack & LloydE. Barrett. (1996) Comparison Between Measured and Predicted Performance of a Two-Axial-Groove Journal Bearing. Tribology Transactions 39:3, pages 571-578.
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K. Dargaiah, K. Parthasarathy & B.S. Prabhu. (1993) Finite Element Method for Computing Dynamic Coefficients of Multilobe Bearings. Tribology Transactions 36:1, pages 73-83.
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GregoryJ. Kostrzewsky & RonaldD. Flack. (1990) Accuracy Evaluation of Experimentally Derived Dynamic Coefficients of Fluid Film Bearings Part I: Development of Method. Tribology Transactions 33:1, pages 105-114.
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Y.P. Chiu. (1989) An Improved Analysis of a Rectangular Swing Pad Thrust Bearing. Tribology Transactions 32:2, pages 113-120.
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J.D. Knight & L.E. Barrett. (1987) Analysis of Axially Grooved Journal Bearings with Heat Transfer Effects. A S L E Transactions 30:3, pages 316-323.
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M.M. Khonsari. (1987) A Review of Thermal Effects in Hydrodynamic Bearings. Part II: Journal Bearings. A S L E Transactions 30:1, pages 26-33.
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J.D. Knight, L.E. Barrett & R.D. Cronan. (1985) The Effects of Supply Pressure on the Operating Characteristics of Two-Axial-Groove Journal Bearings. A S L E Transactions 28:3, pages 336-342.
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P.E. Allaire, J.A. Kocur & J.C. Nicholas. (1985) A Pressure-Parameter Method for Finite-Element Solutions of Reynolds' Equation. A S L E Transactions 28:2, pages 150-158.
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Articles from other publishers (18)

Thales Freitas Peixoto, Diogo Stuani Alves, Felipe Wenzel da Silva Tuckmantel, Gregory Bregion Daniel, Tiago Henrique Machado & Katia Lucchesi Cavalca. (2022) Effect of thermal boundary conditions on dynamic characteristics of multi-lobed bearings. Mechanism and Machine Theory 172, pages 104787.
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Karimulla Shaik & B.K. Dutta. (2021) Stability analysis of horizontal symmetric flexible rotor mounted on hydrodynamic bearing and squeeze film damper using analytical approach. Tribology International 158, pages 106924.
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TVVLN Rao, Ahmad M A Rani, Norani M Mohamed, Hamdan H Ya, Mokhtar Awang & Fakhruldin M Hashim. (2019) Static and stability analysis of partial slip texture multi-lobe journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 234:4, pages 567-587.
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D. Y. Dhande, G. H. Lanjewar & D. W. Pande. (2018) Implementation of CFD–FSI Technique Coupled with Response Surface Optimization method for Analysis of Three-Lobe Hydrodynamic Journal Bearing. Journal of The Institution of Engineers (India): Series C 100:6, pages 955-966.
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D. Y. Dhande, D. W. Pande & G. H. Lanjewar. (2018) Numerical analysis of three lobe hydrodynamic journal bearing using CFD–FSI technique based on response surface evaluation. Journal of the Brazilian Society of Mechanical Sciences and Engineering 40:8.
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S Singhal & M. M. Khonsari. (2005) A simplified thermohydrodynamic stability analysis of journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 219:3, pages 225-234.
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Eskild Storteig & Maurice F. White. (1999) Dynamic characteristics of hydrodynamically lubricated fixed-pad thrust bearings. Wear 232:2, pages 250-255.
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J.K. Martin. (1999) A mathematical model and numerical solution technique for a novel adjustable hydrodynamic bearing. International Journal for Numerical Methods in Fluids 30:7, pages 845-864.
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J.F. Tu, M. Corless, M.J. Gehrich & A.J. Shih. (1998) Experimental Study of a Precision, Hydrodynamic Wheel Spindle for Submicron Cylindrical Grinding. Precision Engineering 22:1, pages 43-57.
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Carmen M. Mu¨ller-Karger & Andre´s L. Granados. (1997) Derivation of Hydrodynamic Bearing Coefficients Using the Minimum Square Method. Journal of Tribology 119:4, pages 802-807.
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D.T. Gethin. (1996) Modelling the thermohydrodynamic behaviour of high speed journal bearings. Tribology International 29:7, pages 579-596.
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Har Prashad. (1996) Evaluation of Dynamic Coefficients of a Two-Lobe Journal Bearing Using an Electrical Analogy Approach. Journal of Tribology 118:3, pages 657-662.
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P. G. Tucker & P. S. Keogh. (1996) On the Dynamic Thermal State in a Hydrodynamic Bearing With a Whirling Journal Using CFD Techniques. Journal of Tribology 118:2, pages 356-363.
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S R Jayaram & B S Prabhu. (1992) Thermal and elastic effects on the performance of the tilting pad journal bearings - a theoretical study. Journal of Physics D: Applied Physics 25:3, pages 373-378.
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D T Gethin & S B Basri. (2016) An Experimental and Numerical Investigation into the Thermal Behaviour of a Three-Lobe Profile Bore Bearing. Proceedings of the Institution of Mechanical Engineers, Part C: Mechanical Engineering Science 205:4, pages 251-264.
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S. Basri & D.T. Gethin. (1990) A comparative study of the thermal behaviour of profile bore bearings. Tribology International 23:4, pages 265-276.
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R. Sinhasan & H.N. Chandrawat. (1989) Analysis of a two-axial-groove journal bearing including thermoelastohydrodynamic effects. Tribology International 22:5, pages 347-353.
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M. Fillon, J. Frene & R. Boncompain. 1987. Fluid Film Lubrication – Osborne Reynolds Centenary, Proceedings of the 13th Leeds–Lyon Symposium on Tribology, held in Bodington Hall, The University of Leeds. Fluid Film Lubrication – Osborne Reynolds Centenary, Proceedings of the 13th Leeds–Lyon Symposium on Tribology, held in Bodington Hall, The University of Leeds 27 47 .

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