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Application of Finite Element Methods to Lubrication: An Engineering Approach
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Booker, J.F.1
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The Elastic Contact of a Rough Surface
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A Failure of EHD Lubrication of Circumferentially Ground Disk
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Dyson, A.1
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Experimental Study of Tilting-Pad Journal Bearings-Comparison With Theoretical Thermoelastohydrodynamic Results
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Fillon, M.1
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0021510450
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Dynamically Loaded Journal Bearings: Finite Element Method Analysis
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Oct
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Goenka, P. K., 1984, “Dynamically Loaded Journal Bearings: Finite Element Method Analysis,” ASME Journal of Tribology, Oct., pp. 429-439.
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Goenka, P.K.1
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The Contact Stress Problem for an Elastic Sphere Indenting An Elastic Cavity
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The Contact of Two Nominally Flat Rough Surfaces
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On the Generalization of Thermohydrodynamic Analyses for Journal Bearings
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Khonsari, M. M., Jang, J. Y., and Fillon, M., 1995, “On the Generalization of Thermohydrodynamic Analyses for Journal Bearings,” ASME Journal of Tribolooy, pp. 1-9.
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Khonsari, M.M.1
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0016943732
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Isothermal Elastohydrodynamic Lubrication of Point Contact
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Hamrock, B. J., and Dowson, D., 1976, “Isothermal Elastohydrodynamic Lubrication of Point Contact,” ASME Journal of Lubrication Technology, Vol. 98, pp. 223-229.
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Hamrock, B.J.1
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0001674404
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On the Load-Average Gap Relation Between Two Rough Contacts with Longitudinal Roughness
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Lee, S. C., and Cheng, H. S., 1992, “On the Load-Average Gap Relation Between Two Rough Contacts with Longitudinal Roughness,” STLE Tribology Transactions, Vol. 35, pp. 523-529.
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Lee, S.C.1
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0029732567
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Behavior of Elastic-Plastic Rough Surface Contacts as Affected by the Surface Topography, Load and Materials
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Lee, S.C.1
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Solution of the Elastohydrodynamic Finite Journal Bearing Problem
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Oh, K. P., and Huebner, K. H., 1973, “Solution of the Elastohydrodynamic Finite Journal Bearing Problem,” ASME Journal of Lubrication Technology, July, pp. 341-349.
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Oh, K.P.1
Huebner, K.H.2
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15
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The Contact of Surfaces Having a Random Surface Structure
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Onions, R. A., and Archard, J. F., 1973, “The Contact of Surfaces Having a Random Surface Structure,” J, of Phys. D, Appi Phys., Vol. 6, pp. 289-304.
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Onions, R.A.1
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0017825563
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An Average Flow Model for Determine Effects of Three Dimensional Roughness on Partial Hydrodynamic Lubrication
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Patir, N., and Cheng, H. S., 1978, “An Average Flow Model for Determine Effects of Three Dimensional Roughness on Partial Hydrodynamic Lubrication,” ASME Journal of Lubrication Technology, Vol. 100, pp. 12-17.
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Patir, N.1
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0029141224
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A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded
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Paranijpe, R. S., and Han, T., 1995, “A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded Journal Bearings,” ASME Journal of Tribology, Vol. 117, pp. 369-377.
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(1995)
Journal Bearings,” ASME Journal of Tribology
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Paranijpe, R.S.1
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19
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0027904447
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A Study of Mixed Lubrication Parameters of Journal Bearings
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Roa, R. A., and Mohanram, P. V., 1992, “A Study of Mixed Lubrication Parameters of Journal Bearings,” Wear, Vol. 160, pp. 111-118.
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Roa, R.A.1
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20
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0028468865
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Frictional Behaviors of Some Nitrogen Ceramics in Lubricated Conformal Contacts
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Wang, Q., Cheng, H. S., and Fine, M. E., 1994, “Frictional Behaviors of Some Nitrogen Ceramics in Lubricated Conformal Contacts,” Tribology Transactions, Vol. 37 (3), pp. 587-593.
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Wang, Q.1
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21
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0029108461
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A Mixed Lubrication Model for Journal Bearings with a Soft Coating, Part I: Contact and Lubrication Analysis
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Wang, Q., and Cheng, H. S., 1995, “A Mixed Lubrication Model for Journal Bearings with a Soft Coating, Part I: Contact and Lubrication Analysis,” STLE Tribology Transactions, Vol. 38, pp. 517-524.
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Wang, Q.1
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23
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0027242610
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A Numerical Analysis for Piston Skirt in Mixed Lubrication-Part II: Deformation Considerations
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Zhu, D., Hu, Y., Cheng, H. S., Arai, T., and Hamai, K., 1993, “A Numerical Analysis for Piston Skirt in Mixed Lubrication-Part II: Deformation Considerations,” ASME Journal of Tribology, Vol. 115, pp. 115-125.
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Zhu, D.1
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24
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0003453202
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McGraw-Hill, New York, NY
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Zienkiewicz, O. C., and Taylor, R. L., 1989, The Finite Element Method, McGraw-Hill, New York, NY.
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The Finite Element Method
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