Three-Dimensional Dynamic Model of TEHD Tilting-Pad Journal Bearing—Part I: Theoretical Modeling

Author:

Suh Junho1,Palazzolo Alan1

Affiliation:

1. Mem. ASME Department of Mechanical Engineering, Texas A&M University, College Station, TX 77840 e-mail:

Abstract

This paper is focused on a new modeling method of three-dimensional (3D) thermo-elasto-hydro-dynamic (TEHD) cylindrical pivot tilting-pad journal bearing (TPJB). Varying viscosity Reynolds equation and 3D energy equation are coupled via lubricant temperature and viscosity relationship. Three-dimensional finite element method (FEM) is adopted for the analysis of: (1) heat conduction in shaft and bearing pad, (2) thermal deformation of shaft and pad, (3) flexible bearing pad dynamic behavior, and (4) heat conduction, convection, and viscous shearing in thin lubricant film. For the computational efficiency, modal coordinate transformation is utilized in the flexible pad dynamic model, and pad dynamic behavior is represented only by means of modal coordinate. Fluid film thickness is calculated by a newly developed node based method, where pad arbitrary thermal and elastic deformation and journal thermal expansion are taken into account simultaneously. The main goal of this research is to provide more accurate numerical TPJB model than developed before so that the designers of rotating machinery are able to understand the bearing dynamic behavior and avoid unpredicted problem by selection of physical parameters.

Publisher

ASME International

Subject

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

Reference22 articles.

1. Spring and Damping Coefficients for the Tilting-Pad Journal Bearing;ASLE Trans.,1964

2. Oil-Film Temperature Distribution in an Infinitely Wide Slider Bearing: An Application of the Finite-Element Method;J. Mech. Eng. Sci.,1973

3. Nilsson, L., 1978, “The Influence of Bearing Flexibility on the Dynamic Performance of Radial Oil Film Bearings,” Proceedings of the 5th Leeds-Lyon Symposium on Tribology, Vol. 9, pp. 331–319.

4. The Influence of Pad Flexibility on the Dynamic Coefficients of a Tilting Pad Journal Bearing;ASME J. Tribol.,1987

5. Evaluation of Pivot Stiffness for Typical Tilting-Pad Journal Bearing Designs;ASME J. Vib. Acoust. Stress Reliab. Des.,1988

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