On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study

Auxiliary Mass Damper‘s (AMD) performance is susceptible to changes in the frequency or in the excitation force’s nature. Therefore, to improve the robustness of the AMD it’s necessary to design new systems which are tunable and that could be used over large frequency range. In this work a friction...

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Main Authors: Guerineau E.L.C., Coelho H.T., Lepore Neto F.P., Santos M.B., Mahfoud J.
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:http://dx.doi.org/10.1051/matecconf/20168301005
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spelling doaj-8db398a7199948ea88d02979e01297822021-02-02T04:01:34ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01830100510.1051/matecconf/20168301005matecconf_csndd2016_01005On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical studyGuerineau E.L.C.Coelho H.T.Lepore Neto F.P.Santos M.B.Mahfoud J.Auxiliary Mass Damper‘s (AMD) performance is susceptible to changes in the frequency or in the excitation force’s nature. Therefore, to improve the robustness of the AMD it’s necessary to design new systems which are tunable and that could be used over large frequency range. In this work a friction damper, which is an association in series of a spring and a scratcher, is used to tune the AMD at the same time it dissipates the mechanical energy of the principal mass by changing the normal force on the scratcher. Three normal force control strategies, and two combinations of them, are studied: i) The normal force is assumed constant; ii) The normal force is obtained from the solution of the equation of motion assuming null displacement for the principal mass; iii) The normal force is obtained based on the vibratory system’s state variables condition, guarantying that the direction of the friction force promotes the movement of the principal mass toward its static equilibrium position. The effectiveness of the proposed tunable AMD, where the adaptability is obtained by controlling the normal force on the smart friction damper, is evaluated based on mass and frequency ratios variations for each strategy.http://dx.doi.org/10.1051/matecconf/20168301005Tunable Auxiliary Mass DamperVariable Damped AbsorberSemi -Active Device Control StrategiesVibration AttenuationFriction Damper
collection DOAJ
language English
format Article
sources DOAJ
author Guerineau E.L.C.
Coelho H.T.
Lepore Neto F.P.
Santos M.B.
Mahfoud J.
spellingShingle Guerineau E.L.C.
Coelho H.T.
Lepore Neto F.P.
Santos M.B.
Mahfoud J.
On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
MATEC Web of Conferences
Tunable Auxiliary Mass Damper
Variable Damped Absorber
Semi -Active Device Control Strategies
Vibration Attenuation
Friction Damper
author_facet Guerineau E.L.C.
Coelho H.T.
Lepore Neto F.P.
Santos M.B.
Mahfoud J.
author_sort Guerineau E.L.C.
title On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
title_short On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
title_full On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
title_fullStr On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
title_full_unstemmed On the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
title_sort on the assessment of a tunable auxiliary mass damper with a friction damper in its suspension: numerical study
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description Auxiliary Mass Damper‘s (AMD) performance is susceptible to changes in the frequency or in the excitation force’s nature. Therefore, to improve the robustness of the AMD it’s necessary to design new systems which are tunable and that could be used over large frequency range. In this work a friction damper, which is an association in series of a spring and a scratcher, is used to tune the AMD at the same time it dissipates the mechanical energy of the principal mass by changing the normal force on the scratcher. Three normal force control strategies, and two combinations of them, are studied: i) The normal force is assumed constant; ii) The normal force is obtained from the solution of the equation of motion assuming null displacement for the principal mass; iii) The normal force is obtained based on the vibratory system’s state variables condition, guarantying that the direction of the friction force promotes the movement of the principal mass toward its static equilibrium position. The effectiveness of the proposed tunable AMD, where the adaptability is obtained by controlling the normal force on the smart friction damper, is evaluated based on mass and frequency ratios variations for each strategy.
topic Tunable Auxiliary Mass Damper
Variable Damped Absorber
Semi -Active Device Control Strategies
Vibration Attenuation
Friction Damper
url http://dx.doi.org/10.1051/matecconf/20168301005
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