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Design and Analysis of a 1D Actively Stabilized System with Viscoelastic Damping Support

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

Abstract

Passively magnetically stabilized degrees of freedom yield the benefit of reduced complexity and therefore costs. However, the application of passive magnetic bearings (PMBs) also features some drawbacks. The poor damping capability leads to exaggerated deflection amplitudes when passing the resonance speeds of the applied system. This results in the necessity of external damping. Complying with the goal of costs and complexity, viscoelastic materials offer a suitable solution. However, these materials show high frequency and temperature dependent properties which induce the necessity of a proper model. Thus, the design of systems, as presented in this paper, requires accurate modeling of the dynamic behavior including the nonlinear characteristic of damping elements to predict the system displacements. In the investigated setup only two degrees of freedom remain to be controlled actively. These are the axial rotation and the axial position of the rotor which are controlled by the motor and an active magnetic axial bearing (AMB). This article focuses on the rotor dynamic modeling of a radial passively magnetically stabilized system especially considering the nonlinear behavior of viscoelastic damping elements. Finally, the results from the analytic model are verified by measurements on a manufactures test system.
OriginalspracheEnglisch
Aufsatznummer33
Seiten (von - bis)33
Seitenumfang18
FachzeitschriftActuators
Volume8
Ausgabenummer2
DOIs
PublikationsstatusVeröffentlicht - 01 Juni 2019

Wissenschaftszweige

  • 202 Elektrotechnik, Elektronik, Informationstechnik
  • 202009 Elektrische Antriebstechnik
  • 202011 Elektrische Maschinen
  • 202025 Leistungselektronik
  • 202027 Mechatronik

JKU-Schwerpunkte

  • Digital Transformation
  • Sustainable Development: Responsible Technologies and Management

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