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Original Articles

Proposed TEHL Solution System for the Thrust Bearings Inclusive of Surface Deformations

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Pages 75-85 | Published online: 25 Mar 2008

REFERENCES

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  • Kim , K. W. , Tanaka , M. and Hori , Y. , “ A Three-Dimensional Analysis of Thermohydrodynamic Performance of Sector Shaped, Tilting Pad, Thrust Bearings ,” ASME Jour. of Lubr. Tech. , 105 , pp 406 – 413 ( 1983 ).
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  • Sternlicht , B. , Carter , G. K. and Arwas , E. B. , “ Adiabatic Analysis of Elastic, Centrally Pivoted, Thrust Bearing Pads ,” ASME Jour. of Appl. Mech. , 28 , pp 179 – 187 ( 1961 ).
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  • Abdel-Latif , L. A. , “ Analysis of Heavily Loaded Tilted Pads Thrust Bearings with Large Dimensions under TEHD Conditions ,” ASME Jour. of Trib. , 110 , pp 467 – 476 ( 1988 ).
  • Pan , C. H. T. , “ Calculation of Pressure, Shear and Flow in Lubricating Films for High Speed Bearings ,” ASME Jour. of Lubr. Tech. , 96 , pp 80 – 94 ( 1974 ).
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  • Kim , K. W. and Rodkiewicz , C. M. , “ On the Thermal Effects in the Design of Tilting-Pad Bearings Subjected to Inlet Pressure Build-Up ,” ASME Jour. of Trib. , 113 , pp 526 – 532 ( 1991 ).
  • Brand , R. S. , “ Inertia Forces in Lubricating Films ,” ASME Jour. of Basic Eng. , 77 , p 363 , ( 1955 ).
  • Rodkiewicz , C. M. , Hinds , J. C. and Dayson , C. , “ Inertia, Convection and Dissipation Effects in the Thermally Boosted Oil Lubricated Sliding Thrust Bearing ,” ASME Jour. of Lubr. Tech. , 97 , p 121 , ( 1975 ).
  • Zhu , D. and Wen , S. , “ A Full Numerical Solution for the Thermo-Elastohydrodynamic Problem in Elliptical Contacts ,” ASME Jour. of Trib. , 106 , pp 246 – 254 ( 1984 ).
  • Rodkiewicz , C. M. and Hou , K. , “ On the TEHL Theory. Part I: Dimensionless Problem Formulation ,” Trib. Trans. , 35 , 2 . pp 253 – 260 ( 1992 ).
  • Yang , P. and Wen , S. , “ A Generalized Reynolds Equation for Non-Newtonian Thermal Elastohydrodynamic Lubrication ,” ASME Jour. of Trib. , 112 , 631 – 636 ( 1990 ).
  • Cheng , H. S. and Sternlicht , S. , “ A Numerical Solution for the Pressure, Temperature and Film Thickness Between Two Infinitely Long, Lubricated Rolling and Sliding Cylinders Under Heavy Loads ,” ASME Jour. of Basic Eng. , 87 , pp 695 – 707 ( 1965 ).
  • Timoshenko , S. T. and Goodier , J. N. , Theory of Elasticity , 3rd ed , McGraw-Hill Book Company , London , ( 1960 ).
  • Huebner , K. H. , The Finite Element Method for Engineers , John Wiley & Sons , New York , ( 1975 ).
  • Yang , P. and Rodkiewicz , C. M. , “ On a Closed Form Solution for the Isothermal Hydrodynamic Lubrication Problem of Pad Bearings Including Fore-Region Pressure Build-Up ,” University of Alberta, Departmental Report, No. 84 , ( 1992 ).
  • Brebbia , C. A. and Walker , S. , Boundary Element Techniques in Engineering , Butterworths , Builford , England , ( 1980 ).
  • McIvor , J. D. C. and Fenner , D. N. , “ Finite Element Analysis of Dynamically Loaded Flexible Journal Bearings: A Fast Newton-Raphson Method ,” ASME Jour. of Trib. , 111 , pp 597 – 604 ( 1989 ).

REFERENCE

  • Brebbia , C. A. and Walker , S. , Boundary Element Techniques in Engineering , , Builford , England , ( 1980 ).

REFERENCE

  • McIvor , J. D. C. and Fenner , D. N. , “ Finite Element Analysis of Dynamically Loaded Flexible Journal Bearings: A Fast Newton-Raphson Method ,” ASME Jour. of Trib. , 111 , pp 597 – 604 ( 1989 ).

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