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Optimization of self-acting herringbone journal bearings for maximum stabilityThe stability of herringbone grooved journal bearings was increased by optimizing the groove depth, width, length, and angle. Optimization was performed on the basis of a small-eccentricity infinite-groove analysis in combination with a previously developed Newton-Raphson procedure for bearings with the smooth member rotating or with the grooved member rotating at low compressibility numbers. A newly-developed vector technique for bearings with the grooved member rotating at high compressibility numbers also was used in the analysis. The design curves obtained are suitable for choosing the optimum bearing for a wide range of operating conditions (compressibility numbers from 0 to 80, length to diameter ratios from 1/4 to 2, and smooth or grooved member rotating). Compared to bearings optimized for maximum load, bearings optimized for maximum stability are shown to provide a drastic increase in bearing-supported mass. Bearings with grooved member rotating are substantially more stable than bearing with smooth member rotating, particularly at high compressibility numbers.
Document ID
19750039540
Acquisition Source
Legacy CDMS
Document Type
Conference Proceedings
Authors
Fleming, D. P.
Hamrock, B. J.
(NASA Lewis Research Center Cleveland, Ohio, United States)
Date Acquired
August 8, 2013
Publication Date
January 1, 1974
Subject Category
Mechanical Engineering
Meeting Information
Meeting: International Gas Bearing Symposium
Location: Southampton
Start Date: March 27, 1974
End Date: March 29, 1974
Accession Number
75A23612
Distribution Limits
Public
Copyright
Other

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