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2
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An Average Flow Model for Determining Effects of Three Dimensional Roughness on Partial Hydrodynamic Lubrication
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Patir N., and Cheng, H. S., “An Average Flow Model for Determining Effects of Three Dimensional Roughness on Partial Hydrodynamic Lubrication,” ASME Journal of Tribology, Vol. 100, 1978, pp. 12-17.
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Patir, N.1
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3
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Application of the Average Flow Model to Lubrication Between Rough Sliding Surfaces
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Patir N., and Cheng, H. S., “Application of the Average Flow Model to Lubrication Between Rough Sliding Surfaces,” ASME Journal of Tribology, Vol. 101, 1979, pp. 220-230.
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4
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A General Theory for Laminar Lubrication With Reynolds Roughness
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Elrod, H. G., “A General Theory for Laminar Lubrication With Reynolds Roughness,” ASME Journal of Tribology, Vol. 101, 1979, pp. 8-14.
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Elrod, H.G.1
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5
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Surface Roughness Effects in Hydrodynamic Lubrication: The Flow Factor Method
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Tripp, J. H., “Surface Roughness Effects in Hydrodynamic Lubrication: The Flow Factor Method,” ASME Journal of Tribology, Vol. 105, 1983, pp. 458-465.
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Tripp, J.H.1
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6
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0021141843
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The Effects of Surface Irregularities on the Eiastohydrodynamic Lubrication of Sliding Line Contacts, Part I Single Irregularities
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Goglia, P. R., Conry, T. F., and Cusano, C., “The Effects of Surface Irregularities on the Eiastohydrodynamic Lubrication of Sliding Line Contacts, Part I Single Irregularities,” ASME Journal of Tribology, Vol. 106, 1984, pp. 104-112.
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Goglia, P.R.1
Conry, T.F.2
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7
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The Effects of Surface Irregularities on the Eiastohydrodynamic Lubrication of Sliding Line Contacts, Part II Wavy Surfaces
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Goglia, P. R., Cusano, C., and Conry, T. F., “The Effects of Surface Irregularities on the Eiastohydrodynamic Lubrication of Sliding Line Contacts, Part II Wavy Surfaces,” ASME Journal of Tribology, Vol. 106, 1984, pp. 113-119.
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Goglia, P.R.1
Cusano, C.2
Conry, T.F.3
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8
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Houpert, L. G., and Hamrock, B. J., “Eiastohydrodynamic Lubrication Calculations Used as a Tool to Study Scuffing,” 12th Leeds-Lyon Symposium, Lyon, 1986.
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Houpert, L.G.1
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9
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Multigrid, an Alternative Method of Solution for Two-Dimensional Elastohydrodynamically Lubricated Point Contacts
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Lubrecht, A. A., ten Napel W. E., and Bosma, R., “Multigrid, an Alternative Method of Solution for Two-Dimensional Elastohydrodynamically Lubricated Point Contacts,” ASME Journal of Tribology, Vol. 109, 1987, pp. 437-443.
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Lubrecht, A.A.1
Ten Napel, W.E.2
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10
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Lubrecht, A. A., “The Numerical Solution of the Elastohydrodynamically Lubricated Line-and Point Contact Problem, Using Multigrid Techniques,” Ph.D. thesis, Twente University, The Netherlands, 1987.
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monograph, available as G.M.D.-studie No. 85, from G.M.D.-FIT, postfach 1240, D-5205, St. Augustin 1, W. Germany, 1984
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Brandt, A., “Multigrid Techniques: 1984 Guide, With Applications to Fluid Dynamics,” monograph, available as G.M.D.-studie No. 85, from G.M.D.-FIT, postfach 1240, D-5205, St. Augustin 1, W. Germany, 1984
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Multigrid Techniques: 1984 Guide, with Applications to Fluid Dynamics
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