Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.

A large body of literature exists regarding linear and nonlinear dynamic absorbers, but the vast majority of it deals with linear primary structures. However, nonlinearity is a frequency occurrence in engineering applications. Therefore, the present thesis focuses on the mitigation of vibrations of...

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Main Author: Viguié, Régis
Other Authors: Sepulchre, Rodolphe
Format: Others
Published: Universite de Liege 2010
Subjects:
Online Access:http://bictel.ulg.ac.be/ETD-db/collection/available/ULgetd-10282010-124920/
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spelling ndltd-BICfB-oai-ETDULg-ULgetd-10282010-1249202013-01-07T15:43:57Z Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems. Viguié, Régis Bifurcation analysis/ Analyse de bifurcations Tuning methodology/Methodologie d'accordage Nonlinear vibration absorber/Amortisseur de vibration nonlineaire Nonlinear primary structure/structure primaire nonlineaire A large body of literature exists regarding linear and nonlinear dynamic absorbers, but the vast majority of it deals with linear primary structures. However, nonlinearity is a frequency occurrence in engineering applications. Therefore, the present thesis focuses on the mitigation of vibrations of nonlinear primary systems using nonlinear dynamic absorbers. Because most existing contributions about their design rely on optimization and sensitivity analysis procedures, which are computationally demanding, or on analytic methods, which may be limited to small-amplitude motions, this thesis sets the emphasis on a tuning procedure of nonlinear vibration absorbers that can be computationally tractable and treat strongly nonlinear regimes of motion. The proposed methodology is a two-step procedure relying on a frequency-energy based approach followed by a bifurcation analysis. The first step, carried out in the free vibration case, imposes the absorber to possess a qualitatively similar dependence on energy as the primary system. This gives rise to an optimal nonlinear functional form and an initial set of absorber parameters. Based upon these initial results, the second step, carried out in the forced vibration case, exploits the relevant information contained within the nonlinear frequency response functions, namely, the bifurcation points. Their tracking in parameter space enables the adjustment of the design parameter values to reach a suitable tuning of the absorber. The use of the resulting integrated tuning methodology on nonlinear vibration absorbers coupled to systems with nonlinear damping is then investigated. The objective lies in determining an appropriate functional form for the absorber so that the limit cycle oscillation suppression is maximized. Finally, the proposed tuning methodology of nonlinear vibration absorbers may impose the use of complicated nonlinear functional forms whose practical realization, using mechanical elements, may be difficult. In this context, an electro-mechanical nonlinear vibration absorber relying on piezoelectric shunting possesses attractive features as various functional forms for the absorber nonlinearity can be achieved through proper circuit design. The foundation of this new approach are laid down and the perspectives are discussed. Sepulchre, Rodolphe Denoel, Vincent Ruzzene, Massimo Cochelin, Bruno Thomas, Olivier Bruls, Olivier Golinval, Jean-Claude Kerschen, Gaëtan Universite de Liege 2010-11-08 text application/pdf http://bictel.ulg.ac.be/ETD-db/collection/available/ULgetd-10282010-124920/ http://bictel.ulg.ac.be/ETD-db/collection/available/ULgetd-10282010-124920/ unrestricted Je certifie avoir complété et signé le contrat BICTEL/e remis par le gestionnaire facultaire.
collection NDLTD
format Others
sources NDLTD
topic Bifurcation analysis/ Analyse de bifurcations
Tuning methodology/Methodologie d'accordage
Nonlinear vibration absorber/Amortisseur de vibration nonlineaire
Nonlinear primary structure/structure primaire nonlineaire
spellingShingle Bifurcation analysis/ Analyse de bifurcations
Tuning methodology/Methodologie d'accordage
Nonlinear vibration absorber/Amortisseur de vibration nonlineaire
Nonlinear primary structure/structure primaire nonlineaire
Viguié, Régis
Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
description A large body of literature exists regarding linear and nonlinear dynamic absorbers, but the vast majority of it deals with linear primary structures. However, nonlinearity is a frequency occurrence in engineering applications. Therefore, the present thesis focuses on the mitigation of vibrations of nonlinear primary systems using nonlinear dynamic absorbers. Because most existing contributions about their design rely on optimization and sensitivity analysis procedures, which are computationally demanding, or on analytic methods, which may be limited to small-amplitude motions, this thesis sets the emphasis on a tuning procedure of nonlinear vibration absorbers that can be computationally tractable and treat strongly nonlinear regimes of motion. The proposed methodology is a two-step procedure relying on a frequency-energy based approach followed by a bifurcation analysis. The first step, carried out in the free vibration case, imposes the absorber to possess a qualitatively similar dependence on energy as the primary system. This gives rise to an optimal nonlinear functional form and an initial set of absorber parameters. Based upon these initial results, the second step, carried out in the forced vibration case, exploits the relevant information contained within the nonlinear frequency response functions, namely, the bifurcation points. Their tracking in parameter space enables the adjustment of the design parameter values to reach a suitable tuning of the absorber. The use of the resulting integrated tuning methodology on nonlinear vibration absorbers coupled to systems with nonlinear damping is then investigated. The objective lies in determining an appropriate functional form for the absorber so that the limit cycle oscillation suppression is maximized. Finally, the proposed tuning methodology of nonlinear vibration absorbers may impose the use of complicated nonlinear functional forms whose practical realization, using mechanical elements, may be difficult. In this context, an electro-mechanical nonlinear vibration absorber relying on piezoelectric shunting possesses attractive features as various functional forms for the absorber nonlinearity can be achieved through proper circuit design. The foundation of this new approach are laid down and the perspectives are discussed.
author2 Sepulchre, Rodolphe
author_facet Sepulchre, Rodolphe
Viguié, Régis
author Viguié, Régis
author_sort Viguié, Régis
title Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
title_short Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
title_full Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
title_fullStr Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
title_full_unstemmed Tuning Methodology of Nonlinear Vibration Absorbers Coupled to Nonlinear Mechanical Systems.
title_sort tuning methodology of nonlinear vibration absorbers coupled to nonlinear mechanical systems.
publisher Universite de Liege
publishDate 2010
url http://bictel.ulg.ac.be/ETD-db/collection/available/ULgetd-10282010-124920/
work_keys_str_mv AT viguieregis tuningmethodologyofnonlinearvibrationabsorberscoupledtononlinearmechanicalsystems
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