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Journal article

Experimental quantification of contact forces with impact, friction and uncertainty analysis

From

Lloyd’s Register Group Ltd.1

Department of Mechanical Engineering, Technical University of Denmark2

Solid Mechanics, Department of Mechanical Engineering, Technical University of Denmark3

During rotor-stator contact dry friction plays a significant role in terms of reversing the rotor precession. The frictional force causes an increase in the rotor's tangential velocity in the direction opposite to that of the angular velocity. This effect is crucial for defining ranges of dry whip and whirl motions in rotor-stator contact investigations.

Dry friction coefficient is therefore estimated using two different experimental setups: (a) standard pin-on-disk tests and (b) rotor impact test rig fully instrumented. The findings in both setups indicate that the dry friction coefficient for brass-aluminum configuration significantly varies in a range of 0.16-0.83.

The rotor enters a full annular contact mode shortly after two impacts with a contact duration of approximately 0.004 s at each location. It is experimentally demonstrated that the friction force is not present when the rotor enters a full annular backward motion. © 2013 Elsevier Ltd.

Language: English
Year: 2013
Pages: 93-104
ISSN: 18792464 and 0301679x
Types: Journal article
DOI: 10.1016/j.triboint.2013.04.016
ORCIDs: Santos, Ilmar

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