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Backbone curves of coupled cubic oscillators in one-to-one internal resonance: bifurcation scenario, measurements and parameter identification

Article dans une revue avec comité de lecture
Author
GIVOIS, Arthur
543315 Laboratoire d’Ingénierie des Systèmes Physiques et Numériques [LISPEN]
12568 Laboratoire de Mécanique des Structures et des Systèmes Couplés [LMSSC]
TAN, Jin-Jack
4629 Eindhoven University of Technology [Eindhoven] [TU/e]
421305 Institut des Sciences de la Mécanique et Applications Industrielles [IMSIA]
ccTOUZÉ, Cyril
300065 École Nationale Supérieure de Techniques Avancées [ENSTA Paris]
421305 Institut des Sciences de la Mécanique et Applications Industrielles [IMSIA]
563936 Institut Polytechnique de Paris [IP Paris]
ccTHOMAS, Olivier
543315 Laboratoire d’Ingénierie des Systèmes Physiques et Numériques [LISPEN]

URI
http://hdl.handle.net/10985/22645
DOI
10.1007/s11012-020-01132-2
Date
2020-02
Journal
Meccanica

Abstract

A system composed of two cubic nonlinear oscillators with close natural frequencies, and thus displaying a 1:1 internal resonance, is studied both theoretically and experimentally, with a special emphasis on the free oscillations and the backbone curves. The instability regions of uncoupled solutions are derived and the bifurcation scenario as a function of the parameters of the problem is established, showing in an exhaustive manner all possible solutions. The backbone curves are then experimentally measured on a circular plate, where the asymmetric modes are known to display companion configurations with close eigenfrequencies. A control system based on a Phase-Locked Loop (PLL) is used to measure the backbone curves and also the frequency response function in the forced and damped case, including unstable branches. The model is used for a complete identification of the unknown parameters and an excellent comparison is drawn out between theoretical prediction and measurements.

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