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Original Articles

Analysis of Axially Grooved Journal Bearings with Heat Transfer Effects

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Pages 316-323 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

JosiahD. Knight. (1990) Prediction of Temperatures in Tilting Pad Journal Bearings. Tribology Transactions 33:2, pages 185-192.
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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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Articles from other publishers (11)

Yon-Do Chun, Jiheon Lee, Jiyoung Lee & Junho Suh. (2022) Thermal Preload for Predicting Performance Change Due to Pad Thermal Deformation of Tilting Pad Journal Bearing. Lubricants 11:1, pages 3.
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D. Jaitner, R. Schönen, G. Knoll & A. Rienäcker. (2018) Effiziente Finite-Elemente-Lösung der Energiegleichung zur thermischen Berechnung tribologischer KontakteEfficient finite element solution of the energy equation for the thermal calculation of tribological contacts. Forschung im Ingenieurwesen 82:4, pages 285-300.
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Andrea Codrignani, Daniele Savio, Franco Magagnato & Bettina Frohnapfel. (2017) A scaling parameter for pressure losses and thermal effects in lubricant flows with viscous dissipation. Tribology International 113, pages 238-244.
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Fabrizio Stefani & Alessandro Rebora. (2009) Steadily loaded journal bearings: Quasi-3D mass–energy-conserving analysis. Tribology International 42:3, pages 448-460.
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Daquan LiuWen ZhangTiesheng Zheng. (2008) A Simplified One-Dimensional Thermal Model for Journal Bearings. Journal of Tribology 130:1.
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R. K. Sharma & R. K. Pandey. (2006) An Investigation into the Validity of the Temperature Profile Approximations across the Film Thickness in THD Analysis of Infinitely Wide Slider Bearing. Tribology Online 1:1, pages 19-24.
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Aurelian Fatu, Mohamed Hajjam & Dominique Bonneau. (2006) A New Model of Thermoelastohydrodynamic Lubrication in Dynamically Loaded Journal Bearings. Journal of Tribology 128:1, pages 85-95.
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S A Gandjalikhan Nassab & M. S. Moayeri. (2005) Three-dimensional thermohydrodynamic analysis of axially grooved journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 216:1, pages 35-47.
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M-T Ma & C. M. Taylor. (2005) A comparative thermal analysis of the static performance of different fixed profile bore plain bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 213:1, pages 13-30.
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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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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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