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Original Articles

Performance of Flat Capillary Compensated Deep/Shallow Pockets Hydrostatic/Hydrodynamic Journal-Thrust Floating Ring Bearing

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Pages 204-212 | Received 28 Dec 2007, Accepted 17 Jul 2008, Published online: 07 Jan 2009

REFERENCES

  • Tanaka , M. and Hori , Y. 1972 . “Stability Characteristics of Floating Bush Bearings,” . J. Lubr. Technol , : 248 – 259 .
  • Mokhtar , M. O. A. 1981 . “Floating Ring Journal Bearing: Theory, Design and Optimization,” . Tribol. Inter. , 14 : 113 – 119 .
  • Trippett , R. J. and Li , D. F. 1984 . “High-Speed Floating-Ring Bearing Test and Analysis,” . Tribol. Trans. , 27 : 73 – 81 .
  • Chow , C. Y. 1984 . “Dynamic Characteristics and Stability of a Helical-Grooved Floating-Ring Bearing Operated in Turbulent Regime,” . ASLE Trans. , 27 : 154 – 163 .
  • Lund , J. W. and Thomsen , K. K. 1978 . “A Calculation Method and Data for the Dynamic Coefficients of Oil-lubrication Journal Bearing,” . In Topics in Fluid Film Bearing and Rotor Bearing System Design and Optimization , New York : ASME .
  • Parkins , D. W. 1979 . “Theoretical and Experimental Determination of the Dynamic Characteristics of a Hydrodynamic Journal Bearing,” . ASME J. Lubr. Technol , 101 : 129 – 139 .
  • Li , C. H. 1982 . “Dynamics of Rotor Bearing Systems Supported by Floating Ring Bearings,” . J. Lubr. Technol , 104 : 469 – 477 .
  • Bouzidane , A. and Thomas , M. 2007 . “Equivalent Stiffness and Damping Investigation of a Hydrostatic Journal Bearing,” . Tribol. Trans. , 50 : 257 – 267 .
  • Naranjo , J. , Holt , C. and San Andres , L. 2001 . “Dynamic Response of a Rotor Supported on a Floating ring Bearing,” . Proc. of the International Symposium on Stability Control of Rotating Machinery , 1 : 2005
  • Petchenev , A. 2000 . “Experimental Study of a Fluid Film Bearing with a Floating Ring,” . Shock and Vibration Digest , 32 : 39
  • Hayashi , H. and Wada , S. 1985 . “Stability of Floating Ring Journal Bearings under Lubricant Starvation,” . Proc. JSLE International Tribology Conference, Tokyo, Japan , 2 : 535 – 540 .
  • Majumdar , B. C. and Brewe , D. E. 1987 . “Stability of a Rotor Supported on Oil Film Journal Bearing under Dynamic Load,” NASA TM-102309, (AV-SCOM TR 87-C-26)
  • San Andres , L. 1997 . “Transient Response of Externally Pressurized Fluid Film Bearings,” . Tribol. Trans. , 40 : 147 – 155 .
  • Tieu , A. K. and Qiu , Z. L. 1995 . “Stability of Finite Journal Bearings—From Linear and Nonlinear Bearing Forces,” . Tribol. Trans. , 38 : 627 – 635 .
  • Zhang , R. Q. and Chang , H. S. 1999 . “Stability of a New Type of Hydrostatic/Hydrodynamic Floating Ring Gas Bearing,” . Tribol. Trans. , 42 : 331 – 337 .
  • Chen , C. H. , Kang , Y. , Huang , Y. N. , Chu , C. H. and Teng , J. T. 2002 . “The Restrictive Effects of Capillary Compensation on the Stability of the Jeffcott Rotor-Hybrid Bearing System,” . Tribol. Inter. , 12 : 849 – 855 .
  • Chen , C. H. 2004 . “The Influence of Orifice Restriction and Journal Eccentricity on the Stability of the Rotor-Hybrid Bearing System,” . Tribol. Inter. , 3 : 227 – 234 .
  • Dong , X. and Zhao , Z. 1990 . “Experimental and Analytical Research on Floating-Ring Bearings for Engine Applications,” . Trans. ASME J. Tribol. , 112 : 119 – 122 .
  • Holt , C. , San Andres , L. , Sahay , S. , Tang , P. , La Rue , G. and Gjika , K. 2005 . “Test Response and Nonlinear Analysis of a Turbocharger Supported on Floating Ring Bearings,” . Trans. ASME J. Vibration and Acoustics. , 127 : 107 – 115 .
  • Holt , C. , San Andres , L. , Sahay , S. , Tang , P. , La Rue , G. and Gjika , K. . “Test Response of a Turbocharger Supported on Floating Ring Bearings-Part II: Comparisons to Nonlinear Rotordynamic Predictions,” . Proc. of the 19th International Biennial Conference on Mechanical Vibration and Noise . Sept. 2-6 , Chicago.
  • San Andres , L. , Rivadeneira , J. C. , Gjika , K. , Groves , C. and La Rue , G. 2007 . “Rotordynamic of Small Turbochargers Supported on Floating Ring Bearings—Highlights in Bearing Analysis and Experimental Validation,” . J. Tribol. , 129 : 391 – 397 .
  • San Andres , L. and Kerth , J. 2004 . “Thermal Effects on the Performance of Floating Ring Bearings for Turbochargers,” . Proc. of the Institution of Mechanical Engineers, Part J: J. Engineering Tribol. , 218 : 437 – 450 .
  • Clarke , D. M. , Fall , C. , Hayden , G. N. and Wilkinson , T. S. 1992 . “Steady-state Model of a Floating Ring Bearing, including Thermal Effects,” . Trans. ASME J. Tribol. , 114 : 141 – 149 .
  • Sharma , S. C. , Kumar , V. , Jain , S. C. , Sinhasan , R. and Subramanian , M. 1999 . “A Study of Slot-entry Hydrostatic/hybrid Journal Bearing Using the Finite Element Method,” . Tribol. Inter. , 32 : 185 – 196 .
  • Sharma , S. C. , Jain , S. C. and Madhu Mohan Reddy , N. 2001 . “A Study of Non-Recessed Hybrid Flexible Journal Bearing with Different Restrictors,” . Tribol. Trans. , 44 : 310 – 317 .
  • Singh , N. , Sharma , S. C. , Jain , S. C. and Sanjeeva Reddy , S. 2004 . “Performance of Membrane Compensated Multirecess Hydrostatic/hybrid Flexible Journal Bearing System Considering Various Recess Shapes,” . Tribol. Inter. , 37 : 11 – 24 .
  • Sharma , S. C. , Nagaraju , T. and Jain , S. C. 2004 . “Performance of an Orifice Compensated Hole-Entry Hybrid Journal Bearing System Considering Surface Roughness and Thermal Effects,” . Tribol. Trans. , 47 : 557 – 566 .
  • Sharma , S. C. , Jain , S. C. and Nagaraju , T. 2002 . “Combined Influence of Journal Misalignment and Surface Roughness on the Performance of an Orifice Compensated Non-Recessed Hybrid Journal Bearing,” . Tribol. Trans. , 45 : 457 – 463 .
  • Kang , J. H. , Kim , S. G. and Kim , K. W. 2005 . “A New Boundary Condition for the Interconnected Boundary of Air-Lubricated Groove Journal and Thrust Bearings,” . Tribol. Trans. , 48 : 199 – 207 .
  • He , Z. and Cheng , D. H. 1994 . “The Report of PLK-48/7.0-0.54 Turbine Expansion Unit,” . In Kaifeng Air Separator Factory 43 – 45 .
  • Nicholas , J. C. , Gunter , E. J. and Allaire , P. E. 1979 . “Stiffness and Damping Coefficients for the Five-pad Tilting-pad Bearing,” . ASLE Trans. , 22 : 113 – 12 .
  • Wygant , K. D. , Flack , R. D. and Barrett , L. E. 2004 . “Measured Performance of Tilting-Pad Journal Bearings over a Range of Preloads—Part I: Static Operating Conditions,” . Tribol. Trans. , 47 : 576 – 584 .
  • Wygant , K. D. , Flack , R. D. and Barrett , L. E. 2004 . “Measured Performance of Tilting-Pad Journal Bearings over a Range of Preloads—Part II: Dynamic Operating Conditions,” . Tribol. Trans. , 47 : 585 – 593 .

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