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Frequency Effects on the Stability of a Journal Bearing for Periodic Loading
Author(s) -
D. Vijayaraghavan,
D. E. Brewe
Publication year - 1992
Publication title -
journal of tribology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.498
H-Index - 84
eISSN - 1528-8897
pISSN - 0742-4787
DOI - 10.1115/1.2920848
Subject(s) - bearing (navigation) , mechanics , reynolds equation , vibration , cavitation , amplitude , stability (learning theory) , materials science , transient (computer programming) , critical frequency , reynolds number , acoustics , physics , computer science , optics , astronomy , machine learning , turbulence , operating system , ionosphere
The stability of a journal bearing is numerically predicted when a unidirectional periodic external load is applied. The analysis is performed using a cavitation algorithm, which mimics the Jakobsson-Floberg and Olsson (JFO) theory by accounting for the mass balance through the complete bearing. Hence, the history of the film is taken into consideration. The loading pattern is taken to be sinusoidal and the frequency of the load cycle is varied. The results are compared with the predictions using Reynolds boundary conditions for both film rupture and reformation. With such comparisons, the need for accurately predicting the cavitation regions for complex loading patterns is clearly demonstrated. For a particular frequency of loading, the effects of mass, amplitude of load variation and frequency of journal speed are also investigated. The journal trajectories, transient variations in fluid film forces, net surface velocity and minimum film thickness, and pressure profiles are also presented.

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