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Vibroacoustical properties of a double-panel structure with stiffness-varying couplings

  • Silesian University of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Noise generated by devices is a serious issue, as it may influence human health in negative ways and cause long-lasting damage. To reduce human exposure to noise, different approaches may be employed, including semi-active methods. A loud device may be enclosed within a cubic casing, whose walls may be built of single or double panels. In this research, a rigid device casing with double-panel walls is employed, and a semi-active modification of the front wall is provided. Double-panel structures are employed in the field of noise control due to good sound insulation they provide. In this paper authors propose a modification of a double-panel structure, which consists of several couplings between the plates with usage of electromagnetic elements, whose stiffness is changeable. Vibroacoustical properties of such structure are examined and analyzed, according to change of couplings' stiffness.

Original languageEnglish
Title of host publication"Advances in Acoustics, Noise and Vibration - 2021" Proceedings of the 27th International Congress on Sound and Vibration, ICSV 2021
EditorsEleonora Carletti, Malcolm Crocker, Marek Pawelczyk, Jiri Tuma
PublisherSilesian University Press
ISBN (Electronic)9788378807995
Publication statusPublished - 2021
Event27th International Congress on Sound and Vibration, ICSV 2021 - Virtual, Online
Duration: 11 Jul 202116 Jul 2021

Publication series

Name"Advances in Acoustics, Noise and Vibration - 2021" Proceedings of the 27th International Congress on Sound and Vibration, ICSV 2021
ISSN (Print)2329-3675

Conference

Conference27th International Congress on Sound and Vibration, ICSV 2021
CityVirtual, Online
Period11/07/2116/07/21

Keywords

  • Device casing
  • Double-panel structure
  • Vibration control
  • Vibroacoustics of plates

ASJC Scopus subject areas

  • Acoustics and Ultrasonics

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