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Experimental Investigation of Damping Properties of Selected Polymer Materials. | LitMetric

Experimental Investigation of Damping Properties of Selected Polymer Materials.

Materials (Basel)

Doctoral School of Engineering and Technical Sciences, Rzeszow University of Technology, al. Powst. Warszawy 12, 35-959 Rzeszów, Poland.

Published: June 2024

AI Article Synopsis

  • The paper investigates the damping properties of viscoelastic materials on a beam for passive vibration isolation through an experimental modal analysis.
  • Various specimen configurations were tested, including a cantilever beam covered with a bitumen-based layer and an improved design featuring a thin aluminum layer for constrained layer damping.
  • Experimental results provided valuable data on resonant vibration frequencies and amplitudes, allowing a quantitative evaluation of the damping effectiveness of the materials used.

Article Abstract

This paper presents the results of an experimental modal analysis of a beam covered by polymer materials used as a passive vibration isolation. The main aim of this study was to determine the damping properties of selected viscoelastic materials. In order to check the damping properties of tested materials, an experimental modal analysis, with the use of an electrodynamic vibration system, was performed. In this study, four kinds of specimens were considered. In the first step of the work, the beam made out of aluminum alloy was investigated. Afterwards, a cantilever beam was covered with a layer of bitumen-based material acting as a damper. This method is commonly known as a free layer damping treatment (FLD). In order to increase the damping capabilities, the previous configuration was improved by fixing a thin aluminum layer directly to the viscoelastic core. Such a treatment is called constrained layer damping (CLD). Subsequently, another polymer (butyl rubber) in the CLD configuration was tested for its damping properties. As a result of the performed experimental modal analysis, the frequencies of resonant vibrations and their corresponding amplitudes were obtained. The experimental results were used to quantitatively evaluate the damping properties of tested materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11205283PMC
http://dx.doi.org/10.3390/ma17123021DOI Listing

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