Etienne Gourc ; Pierre-Olivier Mattei ; Renaud Côte ; Matteo Capaldo - Increasing dynamic range of Nonlinear Energy Sinks by using geometric nonlinear damping

jtcam:13289 - Journal of Theoretical, Computational and Applied Mechanics, March 2, 2026 - https://doi.org/10.46298/jtcam.13289
Increasing dynamic range of Nonlinear Energy Sinks by using geometric nonlinear dampingArticle

Authors: Etienne Gourc 1; Pierre-Olivier Mattei ORCID1; Renaud Cote 1; Matteo Capaldo 2,3


The paper deals with the passive control of resonant systems using nonlinear energy sink (NES). The objective is to highlight the benefits of adding nonlinear geometrical damping to the cubic stiffness nonlinearity. The behaviour of the system is investigated theoretically by using the mixed harmonic balance multiple scales method. Based on the obtained slow ow equations, a design procedure that maximizes the dynamic range of the NES is presented. Singularity theory is used to express conditions for the birth of detached resonance cure independently of the forcing frequency. It is shown that the presence of a detached resonance curve is not necessarily detrimental to the performance of the NES. Moreover, the detached resonance curve can be completely suppressed by adding nonlinear damping. The results of the design procedure are then compared to numerical simulations, confirming the beneficial role of nonlinear damping in increasing the dynamic range of NES.


Published on: March 2, 2026
Imported on: March 26, 2024
Keywords: [SPI.GCIV.DV]Engineering Sciences [physics]/Civil Engineering/Dynamique, vibrations, [PHYS.MECA.VIBR]Physics [physics]/Mechanics [physics]/Vibrations [physics.class-ph], [en] Nonlinear Energy Sink, Nonlinear Damping

Publications

Has review
Etienne Gourc, Pierre-Olivier Mattei, Renaud Côte, Matteo Capaldo, Kevin Dekemele, et al.. Open Review of "Increasing dynamic range of Nonlinear Energy Sinks by using geometric nonlinear damping". 2025. ⟨hal-05177261⟩

Datasets

Is supplemented by
Etienne Gourc, Pierre-Olivier Mattei, Renaud Cote, & Matteo Capaldo. (2026). Accompanying dataset for the paper "Increasing dynamic range of NES by using geometric nonlinear damping" [Dataset]. Zenodo. 10.5281/ZENODO.18221332

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