On the Generalization of Thermohydrodynamic Analyses for Journal Bearings
Author:
Affiliation:
1. Department of Mechanical Engineering, University of Pittsburgh, Pittsburgh, PA 15261
2. Universite de Poitiers, Laboratoire de Mecanique des Solides, Poitiers Cedex, France
Abstract
Publisher
ASME International
Subject
Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials
Link
http://asmedigitalcollection.asme.org/tribology/article-pdf/118/3/571/5599365/571_1.pdf
Reference15 articles.
1. Booser E. R. , RyanF. D., and LinkinhokerC. L., 1970, “Maximum Temperature for Hydrodynamic Bearings under Steady Load,” Lubrication Engineering, Vol. 26, pp. 226–235.
2. Dowson D. , HudsonJ. D., HunterB., and MarchC. N., 1966–1967, “An Experimental Investigation of the Thermal Equilibrium of Steadily Loaded Journal Bearings,” Proc. Instn. Mech. Engrs., Vol. 131, Part 3B, pp. 70–80.
3. Ferron J. , FreneJ., and BoncompainR., 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.
4. Gadangi, R., and Palazzolo, A., 1994a, “Transient Analysis of Tilt Pad Journal Bearings Including Effects of Pad Flexibility and Fluid Film Temperature,” to appear in ASME JOURNAL OF TRIBOLOGY.
5. Gadangi, R., Palazzolo. A., and Kim, J., 1994b, “Transient Analysis of Plain and Tilt Pad Journal Bearings Including Fluid Film Temperature Effects,” to appear in ASME JOURNAL OF TRIBOLOGY.
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