Effect of form errors on oil film characteristics of hydrodynamic journal bearings based on small displacement torsor theory

Author:

Ma Xun,Xu Wubin,Zhang Xueping,Yang Fuyong

Abstract

Purpose This paper aims to investigate how form error of journal affects oil film characteristics, which are composed of several parameters including the maximum film pressure, film moment, frictional coefficient and carrying-load capacity. Design/methodology/approach A new generalized equation based on the small displacement torsor theory is derived, as well as its capability of representing types of form error on the journal, using four specified parameters in a three-dimensional (3D) state. Based on the new generalized equation of form errors, the Reynolds equation is represented and solved numerically using the Swift–Stieber boundary condition. Findings The results show that the form errors of journal have significant influence on all oil film characteristics. However, the film moment remains nearly unchanged as film characteristics, especially eccentricity ratio, become large. All film characteristics investigated vary periodically as the form error. More importantly, it is found that the film pressure distribution transforms to an asymmetric shape along the axial direction of the bearing, no longer a symmetric shape in the case of two-dimensional (2D) form errors. It is necessary to substitute the 3D form error model, which takes the variations of the film characteristics in axial direction into account, for the 2D model in the designing stage of journal bearings. Originality/value First, the effect of the form error of the journal on the performance of hydrodynamic journal bearings is studied in the view of the film characteristics systematically. Secondly, the new generalized equation of form error, derived by SDT theory, is capable of representing any types of form error on the journal, not only representing one type of form error merely.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference18 articles.

1. Cai, M. (2002), “Study on mathematical modeling and analysis of cylindrical feature based on mathematical definition”, Ph.D. Thesis, Zhejiang University, Hangzhou.

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3. Effect of manufacturing errors on performance of gas lubricated journal bearing;Journal of Nanjing University of Aeronautics & Astronautics,1994

4. Ebrat, O. (2002), “Detailed main bearing hydrodynamic characteristics for crankshaft-block dynamic interaction in internal combustion engines”, PhD thesis, University of Michigan.

5. Numerical study of the sensitivity of tilting pad journal bearing performance characteristics to manufacturing tolerances: steady-State analysis;Tribology Transactions,2008

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