Phase resonance testing of highly flexible structures: Measurement of conservative nonlinear modes and nonlinear damping identification

Author:

Debeurre MarielleORCID,Benacchio Simon,Grolet Aurélien,Grenat Clément,Giraud-Audine ChristopheORCID,Thomas OlivierORCID

Funder

Horizon 2020

H2020 Marie Skłodowska-Curie Actions

Research Executive Agency

Horizon 2020 Framework Programme

European Commission

Publisher

Elsevier BV

Reference104 articles.

1. Chaotic non-planar vibrations of the thin elastica, part I: Experimental observation of planar instability;Cusumano;J. Sound Vib.,1995

2. Coupling between high-frequency modes and a low-frequency mode: Theory and experiment;Anderson;Nonlinear Dynam.,1996

3. Nonlinear nonplanar dynamics of parametrically excited cantilever beams;Arafat;Nonlinear Dynam.,1998

4. Very large amplitude vibrations of flexible structures: Experimental identification and validation of a quadratic drag damping model;Colin;J. Fluids Struct.,2020

5. A finite element/quaternion/asymptotic numerical method for the 3D simulation of flexible cables;Cottanceau;Finite Elem. Anal. Des.,2018

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