Analysis of the Stability of Elliptical Journal Bearings under Vapor Cavitation Erosion

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Abstract:

The phenomenon of lubricant cavitation in hydrodynamic bearings and its effect on the stability has been rigorously studied and reported in the literatures. In certain cases, cavitation has significant effect on the dynamic and stability characteristics of the rotor-bearing system. With a proper control of the cavitation condition and groove location, stability can be achieved over a wide range of operating speed, in the case of elliptical journal bearings. On the other hand, the stability is not affected by the presence of vapor cavitation, in the case of multi-lobe journal bearings with the oil supplied at atmospheric pressure. For the unstable, submerged, circular bearings, vapor cavitation phenomena results in a distinctive vibration response observable on the vibration plots. The stability of the elliptical journal bearings under the influence of vapor cavitation erosion was analyzed. It is found that vapor cavitation erosion on elliptical bearings results in instability of the whirling shaft. Collapse of the vapor cavitation bubbles causes erosion wear that falls within the pressure zone of the elliptical bearing, thus causing the instability.

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241-245

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September 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] B.O. Jacobson and B.J. Hamrock, Vapor Cavitation in Dynamically Loaded Journal Bearings, in Joint Lubrication Conf., Washington, D. C, Oct. 5-7, (1982).

Google Scholar

[2] Plain Bearings - Appearance and Characterization of Damage to Metallic Hydrodynamic Bearings, ISO 7416-2, (2008).

DOI: 10.3403/bsiso7146

Google Scholar

[3] T.V.V.L.N. Rao and T. Sawicki, Dynamic Coefficient Prediction in Multi-lobe Journal Bearings Using a Mass Conservation Algorithm, in Tribology Transactions , 414-420, (2003).

DOI: 10.1080/10402000308982645

Google Scholar

[4] M. Tanaka, Journal Bearing Performance Under Starved Lubrication, in Tribology International , 259-264, (2000).

DOI: 10.1016/s0301-679x(00)00040-2

Google Scholar

[5] H. Hashimoto and M. Ochiai, Experimental Study on the Stabilization of Small-Bore Journal Bearings by Controlling Starved Lubrication and Bearing Orientation Angle, in Journal of Tribology, (2009).

DOI: 10.1115/1.2991128

Google Scholar

[6] H. Hashimoto and M. Ochiai, Stabilization Method of Journal Bearings Utilizing Starved Lubrication, in Journal of Tribology , Vol. 132, (2010).

DOI: 10.1115/1.4000269

Google Scholar

[7] R.H. Yusof and I. Ibrahim, Experimental Investigation of Vibration Characteristics for Vapor Cavitation in Plain Journal Bearing, in Applied Mechanics and Material, Vol. 541-542, 613-617, (2014).

DOI: 10.4028/www.scientific.net/amm.541-542.613

Google Scholar

[8] J. Lund and K. Thomsen, "A Calculation Method and Data for the Dynamic Coefficients of Oil-Lubricated Journal Bearings, in Fluid Film Bearing and Rotor Bearing System Design and Optimization, New York: ASME, 1-28, (1978).

Google Scholar

[9] J. Wang and M. Khonsari, Effects of Oil Inlet Pressure and Inlet Position of Axially Grooved Infinitely Long Journal Bearings. Part II: Nonlinear Instability Analysis, in Tribology International, 132-140, (2008).

DOI: 10.1016/j.triboint.2007.05.006

Google Scholar