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タイトルFeasibility study of a discrete bearing/roller drive rotary joint for the space station
本文(外部サイト)http://hdl.handle.net/2060/19860020734
著者(英)Loewenthal, S. H.; Schuller, F. T.
著者所属(英)NASA Lewis Research Center
発行日1986-07-01
言語eng
内容記述The most critical mechanism on board the proposed space station is the continously rotating joint which must accurately align the solar power units with the sun during earth orbit. The feasibility of a multiple, discrete bearing supported joint driven by a self-loading, pinch drive actuator was investigated for this application. This concept appears to offer greater protection against catastrophic jamming, less sensitivity to adverse thermal gradients, greater accessibility to inorbit servicing or replacement and greater adaptability to very large (5 m) truss members than to more conventional continuous support bearing/gear reducer joints. Analytical trade studies performed herein establish that a discrete cam roller bearing support system having eight hangers around a continuous ring would provide sufficient radial and bending stiffness to prevent any degradation in the fundamental frequencies of the solar wing structure. Furthermore, it appears that the pinch roller drive mechanism can be readily sized to meet or exceed system performance and service life requirements. Wear life estimates based on experimental data for a steel roller coated with an advanced polyimide film show a continuous service life more than two orders of magnitude greater than required for this application.
NASA分類MECHANICAL ENGINEERING
レポートNO86N30206
E-3138
NASA-TM-88800
NAS 1.15:88800
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/153484


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