Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System

A methodology for simultaneously balancing of several modes of vibration for a rotor bearing system by mean the so-called active balancing disk is presented in this paper. In order to determine the magnitude of the unbalance and its angular position on the rotor, it is proposed an on-line identifier...

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Main Authors: J.G. Mendoza Larios, J. Colín Ocampo, A. Blanco Ortega, A. Abúndez Pliego, E.S. Gutiérrez Wing
Format: Article
Language:Spanish
Published: Universitat Politecnica de Valencia 2016-07-01
Series:Revista Iberoamericana de Automática e Informática Industrial RIAI
Subjects:
Online Access:https://polipapers.upv.es/index.php/RIAI/article/view/9270
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spelling doaj-0b4b6a7cf5f44e8b88546425cd43b3f22021-04-02T12:14:48ZspaUniversitat Politecnica de ValenciaRevista Iberoamericana de Automática e Informática Industrial RIAI1697-79121697-79202016-07-0113328129210.1016/j.riai.2016.03.0046338Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing SystemJ.G. Mendoza Larios0J. Colín Ocampo1A. Blanco Ortega2A. Abúndez Pliego3E.S. Gutiérrez Wing4CENIDETCENIDETCENIDETCENIDETCENIDETA methodology for simultaneously balancing of several modes of vibration for a rotor bearing system by mean the so-called active balancing disk is presented in this paper. In order to determine the magnitude of the unbalance and its angular position on the rotor, it is proposed an on-line identifier based on algebraic identification. A mathematical model was developed for a multiple degrees-of-freedom rotational system for a beam-type finite element with 4 degrees of freedom per node. This model considers the effect of rotating inertia, gyroscope moments, shearing strains, internal-external damping and the presence of active balancing disks. Likewise, the time scale behavior of the proposed algebraic identifier was assessed and analyzed for an unbalanced mass distribution on different locations along the rotor. For this test, the vibration response was obtained from a multiple degrees-of-freedom rotor dynamic system simulation, with several linear coasting up and down. The results show that it is possible to simultaneously balance up to four vibration modes using two active balancing disks.https://polipapers.upv.es/index.php/RIAI/article/view/9270Balanceorotodinámicaidentificación algebraicarotor-cojinetedesbalancevibración
collection DOAJ
language Spanish
format Article
sources DOAJ
author J.G. Mendoza Larios
J. Colín Ocampo
A. Blanco Ortega
A. Abúndez Pliego
E.S. Gutiérrez Wing
spellingShingle J.G. Mendoza Larios
J. Colín Ocampo
A. Blanco Ortega
A. Abúndez Pliego
E.S. Gutiérrez Wing
Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
Revista Iberoamericana de Automática e Informática Industrial RIAI
Balanceo
rotodinámica
identificación algebraica
rotor-cojinete
desbalance
vibración
author_facet J.G. Mendoza Larios
J. Colín Ocampo
A. Blanco Ortega
A. Abúndez Pliego
E.S. Gutiérrez Wing
author_sort J.G. Mendoza Larios
title Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
title_short Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
title_full Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
title_fullStr Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
title_full_unstemmed Automatic Balancing of a Rotor-Bearing System: On-line Algebraic Identifier for a Rotordynamic Balancing System
title_sort automatic balancing of a rotor-bearing system: on-line algebraic identifier for a rotordynamic balancing system
publisher Universitat Politecnica de Valencia
series Revista Iberoamericana de Automática e Informática Industrial RIAI
issn 1697-7912
1697-7920
publishDate 2016-07-01
description A methodology for simultaneously balancing of several modes of vibration for a rotor bearing system by mean the so-called active balancing disk is presented in this paper. In order to determine the magnitude of the unbalance and its angular position on the rotor, it is proposed an on-line identifier based on algebraic identification. A mathematical model was developed for a multiple degrees-of-freedom rotational system for a beam-type finite element with 4 degrees of freedom per node. This model considers the effect of rotating inertia, gyroscope moments, shearing strains, internal-external damping and the presence of active balancing disks. Likewise, the time scale behavior of the proposed algebraic identifier was assessed and analyzed for an unbalanced mass distribution on different locations along the rotor. For this test, the vibration response was obtained from a multiple degrees-of-freedom rotor dynamic system simulation, with several linear coasting up and down. The results show that it is possible to simultaneously balance up to four vibration modes using two active balancing disks.
topic Balanceo
rotodinámica
identificación algebraica
rotor-cojinete
desbalance
vibración
url https://polipapers.upv.es/index.php/RIAI/article/view/9270
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