Affiliation:
1. Department of Mechanical Engineering, Florida International University, Miami, FL 33199
Abstract
A mixed-TEHD (thermal elastohydrodynamic) model was developed for journal bearings working at large eccentricity ratios in order to facilitate a better understanding of mixed-lubrication phenomena for conformal-contact elements. The model consists of a mixed-lubrication process that considers the roughness effect and asperity contact, a thermal process for temperature analyses, and a thermal-elastic process for deformation calculations. In this model, the interactive journal, lubricant, and bearing were treated as an integrated system. Finite-element, finite-difference, and influence-function methods were utilized in the numerical process. The overall solution was achieved by the iteration method. Analyses of a simulated bearing-lubricant-journal system working under mixed-lubrication conditions were conducted, and the influence of the changes of lubricant flows as a result of the asperity contact on the system heat transfer and temperature distributions was numerically investigated.
Subject
Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials
Reference18 articles.
1. Dyson
A.
, 1976, “A Failure of EHD Lubrication of Circumferentially Ground Disk,” Proceedings of IME, Vol. 190, pp. 52–76.
2. Ferron
J.
, FreˆneJ., and BoncompainR., 1983, “A Study of the Thermalhydrodynamic Performance of a Plain Journal Bearing Comparison Between Theory and Experiments,” ASME JOURNAL OF LUBRICATION TECHNOLOGY, Vol. 105, pp. 422–428.
3. Fillon
M.
, BligoudJ., and FreˆneJ., 1992, “Experimental Study of Tilting-Pad Journal Bearings-Comparison With Theoretical Thermoelastohydrodynamic Results,” ASME JOURNAL OF TRIBOLOGY, Vol. 114, pp. 579–587.
4. Khonsari, M. M., Jang, J. Y., and Fillon, M., 1995, “On the Generalization of Thermohydrodynamic Analyses for Journal Bearings,” ASME JOURNAL OF TRIBOLOGY, pp. 1–9.
5. Knight
J. D.
, and NiewiarowskiA. J., 1990, “Effect of Two Film Rupture Models on the Thermal Analysis of a Journal Bearing,” ASME JOURNAL OF TRIBOLOGY, Vol. 112, pp. 183–188.
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