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Tytuł artykułu

Acoustic properties of biodegradable materials in the low and medium frequency range

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Materials commonly used in various public spaces are characterized by sound-absorbing or insulating properties. Natural fiber composites are an eco-friendly promising alternative to conventional synthetic fiber composites. For specialized rooms, it is essential to provide good insulation and properly selected sound-absorbing materials. This article presents the results of tests on the acoustic properties of selected natural, biodegradable materials. The aim of the research was to find biodegradable composites that would have good insulating and absorption properties in the low- and medium-frequency ranges. Firstly we tested several configurations of composites made of various wood-based materials in terms of sound pressure vs. frequency. Then, the sound absorption coefficients of the best natural fiber composites used were measured by the technique of two microphone transfer functions in the impedance tube. It was concluded that multi-functional composite materials can be made by natural fibers so that both the good acoustic insulation together with appropriately high sound absorption coefficients in the low and medium frequency range can be achieved.
Rocznik
Strony
art. no. 2024208
Opis fizyczny
Bibliogr. 15 poz., fot. kolor., wykr.
Twórcy
  • University of Rzeszow, Institute of Materials Engineering, al. Rejtana 16c, 35-959 Rzeszow,
  • University of Rzeszow, Institute of Materials Engineering, al. Rejtana 16c, 35-959 Rzeszow,
  • Rzeszow University of Technology, Mechanical Engineering and Aeronautics Faculty, Al. Powstancow Warszawy 12, 35-959 Rzeszow, Poland
Bibliografia
  • 1. R.D.S.G. Campilho (ed.); Natural fiber composites, CRC Press, Boca Raton, 2015
  • 2. A. Gholampour, T. Ozbakkaloglu; A review of natural fiber composites: properties, modification and processing techniques, characterization, applications; J. Mater. Sci., 2020, 55, 55-892
  • 3. U. Berardi, G. Iannace; Acoustic characterization of natural fibers for sound absorption applications; Build. Environ., 2015, 94, 840-852
  • 4. E. Taban, A Khavanin, A. Ohadi, A. Putra, A. Jonidi Jafari, M. Faridan, A. Soleimanian; Study on the acoustic characteristics of natural date palm fibres: Experimental and theoretical approaches; Building and Environment, 2019, 161, 106274
  • 5. S. Ehsan Samaei, U. Berardi, P. Soltani, E. Taban; Experimental and modeling investigation of the acoustic behavior of sustainable kenaf/yucca composites; Applied Acoustics, 2021, 183, 108332
  • 6. J.F. Allard, N. Atalla; Propagation of Sound in Porous Media. Modelling Sound Absorbing Materials; John Wiley & Sons, Ltd. New York, 2009
  • 7. Z. Hong, L. Bo , H. Guangsu, H. Jia; A novel composite sound absorber with recycled rubber particles; Journal of Sound and Vibration, 2007, 304 (1-2), 400-406
  • 8. J. Kang; Acoustics and sustainability: A built environment perspective; Int. J. Acoust. Vib., 2020, 25(3), 292
  • 9. S. Fatima, A.R. Mohanty; Acoustical and fire-retardant properties of jute composite materials; Applied Acoustics, 2011, 72(2-3), 108-114
  • 10. N. Dhandapani, A. Megalingam; Mechanical and Sound Absorption Behavior of Sisal and Palm Fiber Reinforced Hybrid Composites; J. Nat. Fibers., 2021, 19(12), 4530-4543
  • 11. J. Smardzewski, T. Kamisiński, D. Dziurka, R. Mirski, A. Majewski, A. Flach, A. Pilch; Sound absorption of wood-based materials; Holzforschung, 2015, 69(4), 431-439
  • 12. V.K. Singh, S. Mukhopadhyay; Studies on the Effect of Hybridization on Sound Insulation of Coir-banana-polypropylene Hybrid Biocomposites; J. Nat. Fibers., 2022, 19, 349-358
  • 13. ASTM E1050; Standard Test Method for Impedance and Absorption of Acoustical Materials Using a Tube, Two Microphones and a Digital Frequency Analysis System
  • 14. ASTM E-2611 (TL); Standard Test Method for Measurement of Normal Incidence Sound Transmission of Acoustical Materials Based on the Transfer Matrix Method
  • 15. PN-EN ISO 10534-2:2003; Acoustics - Determination of Sound Absorption Coefficient and Impedance in Impedance Tubes - Part 2: Transfer-Function Method, 2003
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5548cb97-03b2-4361-8e3d-64f893f5ed95
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