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TECHNICAL BRIEFS

Fluid Inertia Effects in a Non-Newtonian Squeeze Film Between Two Plane Annuli

[+] Author and Article Information
R. Usha, P. Vimala

Department of Mathematics, Indian Institute of Technology, Madras 600 036, India

J. Tribol 122(4), 872-875 (Dec 17, 1999) (4 pages) doi:10.1115/1.1288928 History: Received May 13, 1999; Revised December 17, 1999
Copyright © 2000 by ASME
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References

Na,  T. Y., 1966, “The Non-Newtonian Squeeze Film,” ASME J. Basic Eng., 88, No. 3, pp. 687–688.
Elkouh,  A. F., Nigro,  N. J., and Liou,  Y. S., 1982, “Non-Newtonian Squeeze Film Between Two Plane Annuli,” ASME J. Lubr. Technol., 104, No. 2, pp. 275–278.
Elkouh,  A. F., 1976, “Fluid Inertia Effects in Non-Newtonian Squeeze Films,” ASME J. Lubr. Technol., 98, No. 3, pp. 409–411.
Tichy,  J. A., and Winer,  W. O., 1978, “An Investigation Into the Influence of Fluid Viscoelasticity in a Squeeze Film Bearing,” ASME J. Lubr. Technol., 100, No. 1, pp. 56–64.
Hashimoto,  H., 1994, “Non-Newtonian Effects on the Static Characteristics of One-Dimensional Slider Bearings in the Inertial Flow Regime,” ASME J. Tribol., 116, pp. 303–309.
Hashimoto,  H., 1994, “Viscoelastic Squeeze Film Characteristics with Inertia Effects between Two Parallel Circular Plates under Sinusoidal Motion,” ASME J. Tribol., 116, pp. 161–166.
Hashimoto,  H., and Wada,  S., 1986, “The Effects of Fluid Inertia Forces in Parallel Circular Squeeze Film Bearings Lubricated with Pseudoplastic Fluids,” ASME J. Tribol., 108, pp. 282–287.

Figures

Grahic Jump Location
Schematic representation of squeeze film
Grahic Jump Location
Non-Newtonian effects on the pressure distribution
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Inertial effects on the pressure distribution
Grahic Jump Location
Non-Newtonian effects on the load
Grahic Jump Location
Inertia effects on the load
Grahic Jump Location
Inertia correction in the load

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