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Original Articles

The Effects of Bearing Geometry on Rotor Stability

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Pages 160-165 | Published online: 25 Mar 2008

REFERENCES

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  • Brindley , J. , Elliott , L. and McKay , J T. , “ The Role of Cavitation in Whirl Instability in a Rotor Bearing,” Parts I and II , ASME J. Appl. Mech. , pp 877 – 884 pp 886 – 890 ( 1983 ). “Whirl Instabilities in Pressure Step Bearings,” to appear in ASME J. Appl. Mech. (1984).
  • Allaire , P E. , “ Design of Journal Bearings for High Speed Rotating Machinery ,” Fundamentals of the Design of Fluid Film Bearings , ASME , pp 45 – 84 ( 1978 ).
  • Ruddy , A V. , “ The Dynamics of Rotor Bearing Systems with Particular Reference to the Influence of Fluid Film Journal Bearings and the Modelling of Flexible Rotors ,” PhD Thesis, Leeds University , UK , 1979 .
  • Newkirk , B L. and Grobel , L P. , “ Oil Film Whirl—A Non-Whirling Bearing ,” Trans. ASME , 56 , pp 607 – 615 ( 1934 ).
  • Wilcock , D F. , “ Orthogonally Displaced Bearings I ,” ASLE Trans. , 4 , pp 117 – 123 ( 1961 ).
  • Akers , A. and Cameron , A. , “ Use of Journal Bearing with Stepped Housings ,” Proc. Tribology Conv. (Inst. Mech. Engineers) , pp 9 – 17 ( 1971 ).
  • Pan , C H. T. and Ibrahim , R A. , “ Cavitation in a Short Bearing with Pressurised Lubricant Supply ,” ASME J. Lubr. Tech. , 103 , pp 337 – 349 ( 1981 ).
  • Constantinescu , V N. and Galateuse , S. , “ Pressure Drop Due to Inertia Forces in Step Bearings ,” ASME J. Lubr. Tech. , 98 , pp 167 – 174 ( 1976 ).

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