An Experimental Study of Static and Dynamic Characteristics of a 580mm(22.8in.) Diameter Direct Lubrication Tilting Pad Journal Bearing

Author:

Ikeda Kazunori1,Hirano Toshio1,Yamashita Tatsuo1,Mikami Makoto1,Sakakida Hitoshi1

Affiliation:

1. Power and Industrial Systems Research and Development Center, Toshiba Corporation, 2-4, Suehiro-cho, Tsurumi-ku, Yokohama, 230-0045, Japan

Abstract

Abstract Direct lubrication tilting pad journal bearings (DLTPJ bearings) have rarely been applied to large-scale rotating machinery, such as turbines or generators, whose journal diameters are more than 500mm. In this paper, static and dynamic characteristics of a 580mm(22.8in.) diameter DLTPJ bearing were studied experimentally using a full-scale bearing test rig. In the static test, distribution of metal temperature, oil film pressure, and bearing loss were measured in changing oil flow rate, with mean bearing pressure ranging up to 2.9MPa. The maximum metal temperature of the DLTPJ bearing was compared to that of a conventional flood lubrication bearing, and it was confirmed that the direct lubrication could increase load capacity. In the dynamic test, spring and damping coefficients of oil film were obtained by exciting the bearing casing that was floated by air bellows. These data will be used for analysis and design of steam turbine rotors and their bearing systems. Also, vibration of pads was investigated because metal failure on upper pads due to vibration has been found in some actual machines. In order to generate oil film pressure on the surface of upper pads, a Rayleigh-step was machined there, and it was confirmed that vibration was reduced by the Rayleigh-step.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference19 articles.

1. Tilting Pad Thrust Bearings: Factors Affecting Performance and Improvements With Directed Lubrication;Bielec

2. A Comparison of Tilting Pad Thrust Bearing Lubricant Supply Methods;Mikura;ASME J. Lubr. Technol.

3. Influence of Oil Injection Method on Thrust Bearing Performance at Low Flow Conditions;Stewart

4. Thermohydrodynamic Performance of a Tilting Pad Journal Bearing With Spot Lubrication;Tanaka;ASME J. Tribol.

5. A Study of the Thermal Characteristics of the Leading Edge Groove and Conventional Tilting Pad Journal Bearings;Dmochowski;ASME J. Tribol.

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