Acoustic Characteristics of Jute and Coir Non-woven Fabric

被引:0
|
作者
Singh S. [1 ]
Kapoor R.R. [2 ]
机构
[1] Dr. D. Y. Patil School of Design, Dr. D. Y. Patil Vidyapeeth, Pune
[2] School of Design, Mody University of Science and Technology, Rajasthan
来源
关键词
acoustic; jute; noise reduction; non-woven; sound absorption;
D O I
10.31881/TLR.2023.060
中图分类号
学科分类号
摘要
Effective noise reduction is essential because it can influence the health and well-being of living organisms significantly, both physically and psychologically. This necessitates the use of appropriate absorbing materials to minimize the negative impact of noise. In recent years, there has been growing interest in using jute, coir and natural fibre-based acoustic materials in architectural and interior applications due to their exceptional acoustic properties, eco-friendliness, cost-effectiveness and widespread availability. The study focuses on analysing the effects of some scrutinised testing parameters of jute, coir and jute-coir blended non-woven fabric samples on noise reduction coefficient through observing sound absorption coefficient. The sound absorption coefficient was measured using the impedance tube method as per the ASTM E-1050 standard. The mean value of the sound absorption coefficient observed at frequencies 250 Hz, 500 Hz, 1000 Hz, and 2500 Hz was used to calculate the noise reduction coefficient. A three-factor & three-level Box–Behnken experimental design was used for designing research and non-woven jute, coir and jute coir blended fabric sample planning. The experimental work showed that with an increase in non-woven jute fabric sample thickness from 15 mm to 45 mm, blending jute 50 % with coir 50% and non-woven fabric samples tested by creating air gaps (15 mm to 30 mm) resulted in higher sound absorption coefficient and improved noise reduction coefficient. The experimental findings and statistical analysis revealed that blending jute with coir and increasing the thickness of non-woven fabric led to a significant improvement in the acoustic performance of the tested samples. However, increasing the air gap resulted in only a marginal improvement in acoustic performance. © 2023, idd3. All rights reserved.
引用
收藏
页码:306 / 319
页数:13
相关论文
共 50 条
  • [41] Enzyme Activity of Lipase Immobilized Non-Woven Fabric for Biodiesel Production
    Kim, Ye Jin
    Lee, Sung Hae
    Hong, Sung Kyu
    Kim, Min
    Park, Sang Jin
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2010, 48 (01): : 121 - 127
  • [42] Acoustic Emission from a Porous Non-Woven Fiberglass Material
    Y. Chen
    T. Siegmund
    Experimental Mechanics, 2019, 59 : 179 - 186
  • [43] Acoustic Emission from a Porous Non-Woven Fiberglass Material
    Chen, Y.
    Siegmund, T.
    EXPERIMENTAL MECHANICS, 2019, 59 (02) : 179 - 186
  • [44] Microcapsules on woven and non-woven materials
    Knez, E.
    Kukovič, M.
    Pipal, V.
    Boh, B.
    2000, Gordon & Breach Science Publ Inc, Newark (47): : 693 - 699
  • [45] Development of Water-Proof Coated Fabric sing Melt Blown Non-Woven Fabric
    Ramaiah, Gurumurthy B.
    Mekonnen, Seblework
    Solomon, Eshetu
    Chilla, Parashuram S.
    Ari, Ashok P.
    THIRD INTERNATIONAL CONFERENCE ON MATERIAL SCIENCE, SMART STRUCTURES AND APPLICATIONS (ICMSS 2020), 2021, 2327
  • [46] NON-WOVEN FABRICS
    DAVIES, S
    TURNER, JC
    SCIENCE JOURNAL, 1969, A 5 (01): : 75 - &
  • [47] NON-WOVEN FABRICS
    COKE, CE
    CHEMISTRY & INDUSTRY, 1958, (48) : 1569 - 1576
  • [48] NON-WOVEN SPECIALITIES
    SIMERL, LE
    PAPER TECHNOLOGY AND INDUSTRY, 1972, 13 (06): : 410 - 411
  • [49] Performance of jute non-woven mat reinforced polyester matrix composite in multilayered armor
    de Assis, Foluke Salgado
    Pereira, Artur Camposo
    Garcia Filho, Fabio da Costa
    Lima, Edio Pereira, Jr.
    Monteiro, Sergio Neves
    Weber, Ricardo Ponde
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2018, 7 (04): : 535 - 540
  • [50] Development of Meltblown Non-Woven Fabric Type Non-Magnetic Noise Suppressor
    Fu, Jiang
    Yamaguchi, Masahiro
    Tanaka, Tomoya
    Okamura, Chie
    Obi, Lumina
    Kato, Kazufumi
    Muroga, Sho
    2016 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY (APEMC), 2016, : 656 - 658