Acoustic Characteristics of Ultra-porous Aerogel/Fiber Composite Materials

초다공성 에어로겔 함유 섬유상 복합체의 흡음특성에 관한 연구

  • Oh, Kyung-Wha (Department of Home Economics Education, Chung-Ang University) ;
  • Choi, Hae-Woon (Department of Clothing & Textiles, Hanyang University)
  • Published : 2009.02.28

Abstract

Experimental results on the acoustic properties of aerogel/fiber composite materials and polyester 100% nonwovens are presented. The effects of the thickness, combination, and solidity of acoustic absorbents on the sound absorption coefficient were investigated. The capacity of sound absorption was measured by ISO 10534-1:1966. At a thickness of aerogel/fiber composite materials of 18 mm the coefficient of sound absorption reaches values of more than 70% for 630 Hz. With increasing thickness of the aerogel/fiber composite materials, the maximum value moves towards lower frequencies. The polyester 100% nonwovens exhibit high coefficient of sound absorption in the high frequency range with increasing thickness and solidity. Multilayered stacks(combinations of aerogel/fiber composite materials and polyester 100% nonwovens) can take advantage of high attenuation in both low and high frequency ranges. The experimental determination of the characteristic attenuation for each acoustic absorbent allows us to determine the acoustical characteristics of multilayered stack and could lead to an optimization of the number of layers and of the thickness of each layer for a given combination.

Keywords

References

  1. C. Kyriakakis, 'Fundamental and Technological Limitations of Immersive Audio Systems', Proceedings of IEEE, 1998, pp.941-951
  2. 임형주, 스피커 배치만 바꿔도 소리가 달라진다, 월간 PC라인, 2008
  3. Y. K. Kim, ' An Analysis on the Problems of Multichannel Sound Reproductions of the Residential Listening Spaces in Korea and Its Suggestions to Improve the Sound Reproduction Qualities of Surround Channels', Master’s Thesis, Sangmyung University, Seoul, Korea, 2006
  4. G. H. Lee, 'Prediction of the Acoustic Characteristics of Panel with Porous Material', Master's Thesis, Hanyang University, Seoul, Korea, 2000
  5. J. H. Yoon and K. W. Oh, 'Sound Absorption Properties of Interior Wall Covering Textiles', Text Sci Eng, 2005, 42(4), 255-262
  6. D. J. Kang, J. W. Lee, W. S. Lee, J. K. Hong, and Y. H. Jo, 'Absorption Characteristics of Building Interior Decoration Materials', Proceedings of the Korean Society for Noise and Vibration Engineering Conference, 2006
  7. 정성수, '소음저감을 위한 흡음시스템 설계방안 설비저널', 2007, 36(1), 13-18
  8. H. J. Chang and D. H. Chun, ' Experimental Study to Determine Sound Absorption Factors of Fiber Assemblies with Membrane Structure', J Korean Fiber Soc, 2004, 41(4), 285-290
  9. Y. E. Lee and C. W. Joo, 'Theoretical Modeling and Experimental Fitness on Sound Absorption Characteristics of Nonwoven Fabrics', Text Sci Eng, 2005, 42(6), 383-390
  10. K. S. Lee, K. S. Lee, J. H. Kim, M. S. Kim, and H. M. Jeong, 'Sound Damping of Polyurethane Foam Nanocomposite', Macromolecular Research, 2007, 15(5), 443-448 https://doi.org/10.1007/BF03218812
  11. S. Caponi, A. Fontana, M. Montagna, O. Pilla, F. Rossi, F. Terki, and T. Woignier, 'Acoustic Attenuation in Silica Porous Systems', J Non-crystalline Solids, 2003, 322, 29-34 https://doi.org/10.1016/S0022-3093(03)00167-4
  12. M. Schmidt and F. Schwertfeger, ' Application for Silica Products', J Non-crystalline Solids, 1998, 225, 364-368 https://doi.org/10.1016/S0022-3093(98)00054-4
  13. L. Forest, V. Gibiat, and A. Hooley, 'Impedance Matching and Acoustic Absorption in Granular Layers of Silica Aerogels', J Non-crystalline Solids, 2001, 285, 230-235 https://doi.org/10.1016/S0022-3093(01)00458-6
  14. D. R. Daughton, J. MacDonald, and N. Mulders, ' Acoustic Properties of Silica Aerogel from 400 rriK to 400 K', Physica B, 2003, 1233-1234
  15. A. V. Rao, N. D. Hegde, and H. hirashima, ' Absorption and Desorption of Organic Liquids in Elastic Superhydrophobic Silica Aerogels', J Colloid Interf Sci, 2007, 305, 124-132 https://doi.org/10.1016/j.jcis.2006.09.025
  16. 김창열, 이종규,김병익,'초단열 Flexible 에어로겔 블랑켓 개발',월간세라믹스, 2007, 20, 85-88
  17. S. R. Alten, 'Audio in Media', 7th Ed., Thomson Corp., Seoul, Korea, 2006
  18. K. H. Oh and J. H. Yoon, 'The Influence of Structural Characteristics of Rear Acoustic Absorbents on Sound Absorption Capability', Text Sci Eng, 2005, 42(6), 391-397
  19. D. Takahasi, K. Sakagarni, and M. Morimoto, 'Acoustic Properties of Permeable Membranes', J Acoustic Soc Am, 1996, 99, 3003-3009 https://doi.org/10.1121/1.415213