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Multi-flexible-body dynamics capturing motion-induced stiffnessA multi-flexible-body dynamics formulation incorporating a recently developed theory for capturing motion induced stiffness for a arbitrary structure undergoing large rotation and translation accompanied by small vibrations is presented. In essence, the method consists of correcting prematurely linearized dynamical equations for an arbitrary flexible body with generalized active forces due to geometric stiffness corresponding to a system of twelve inertia forces and nine inertia couples distributed over the body. Equations of motion are derived by means of Kane's method. A useful feature of the formulation is its treatment of prescribed motions and interaction forces. Results of simulations of motions of three flexible spacecraft, involving stiffening during spinup motion, dynamic buckling, and a repositioning maneuver, demonstrate the validity and generality of the theory.
Document ID
19900013697
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Banerjee, Arun K.
(Lockheed Missiles and Space Co. Sunnyvale, CA, United States)
Lemak, Mark E.
(Lockheed Missiles and Space Co. Sunnyvale, CA, United States)
Dickens, John M.
(Lockheed Missiles and Space Co. Sunnyvale, CA, United States)
Date Acquired
September 6, 2013
Publication Date
December 15, 1989
Publication Information
Publication: JPL, Proceedings of the 3rd Annual Conference on Aerospace Computational Control, Volume 1
Subject Category
Computer Systems
Accession Number
90N23013
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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