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Original Articles

Feed-Pressure Flow in Plain Journal Bearings

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Pages 381-392 | Published online: 25 Mar 2008

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DonaldF. Wilcock. (1988) Influence of Feed Groove Pressure and Related Lubricant Flow on Journal Bearing Performance. Tribology Transactions 31:3, pages 398-404.
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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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Articles from other publishers (25)

Pavel Novotný & Jozef Hrabovský. (2020) Efficient computational modelling of low loaded bearings of turbocharger rotors. International Journal of Mechanical Sciences 174, pages 105505.
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Yousuf Mansoor & Paul Shayler. (2018) The effect of oil feed pressure on the friction torque of plain bearings under light, steady loads. Tribology International 119, pages 316-328.
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Nithin M Joy & Lintu Roy. (2016) Determination of optimum configuration among different configurations of two-axial groove hydrodynamic bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 230:9, pages 1071-1091.
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Harish Hirani. 2016. Fundamentals of Engineering Tribology with Applications. Fundamentals of Engineering Tribology with Applications 120 186 .
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L. Roy & S.K. Laha. (2009) Steady state and dynamic characteristics of axial grooved journal bearings. Tribology International 42:5, pages 754-761.
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Gwidon W. Stachowiak & Andrew W. Batchelor. 2006. Engineering Tribology. Engineering Tribology 103 204 .
H Hirani. (2005) Multiobjective optimization of journal bearing using mass conserving and genetic algorithms. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 219:3, pages 235-248.
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Benoit Honel, Renaud Meillier, Frederic Brix, Yasushi Noda, Toshiyuki Andou & Masashi Hosoya. Model of an Engine Lubrication Circuit including Predictive Bearing Components. Model of an Engine Lubrication Circuit including Predictive Bearing Components.
H. Hirani, K. Athre & S. Biswas. (2000) A Hybrid Solution Scheme for Performance Evaluation of Crankshaft Bearings. Journal of Tribology 122:4, pages 733-740.
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H Hirani, K Athre & S Biswas. (2005) Comprehensive design methodology for an engine journal bearing. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 214:4, pages 401-412.
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Abid Mian. (1999) Lubricating automotive engines. Industrial Lubrication and Tribology 51:2, pages 62-68.
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F. A. Martin. (2005) Oil flow in plain steadily loaded journal bearings: Realistic predictions using rapid techniques. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 212:6, pages 413-425.
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H. Hirani, T.V.V.L.N. Rao, K. Athre & S. Biswas. (1997) Rapid performance evaluation of journal bearings. Tribology International 30:11, pages 825-834.
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M. A. Mian. Design and Analysis of Engine Lubrication Systems. Design and Analysis of Engine Lubrication Systems.
S. Boedo, J.F. Booker & M.J. Wilkie. 1995. Lubricants and Lubrication - Proceedings of the 21th leeds-Lyon Symposium on Tribology. Lubricants and Lubrication - Proceedings of the 21th leeds-Lyon Symposium on Tribology 513 523 .
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H. So & J.A. Shieh. (1987) The cooling effects of supply oil on journal bearings for varying inlet conditions. Tribology International 20:2, pages 79-89.
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D.T. Gethin & J.O. Medwell. 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 81 92 .

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