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物理性能及增加机织物层数对吸声能力的影响

The Influence of Physical Properties and Increasing Woven Fabric Layers on the Noise Absorption Capacity.

作者信息

Samuel Bethalihem Teferi, Barburski Marcin, Witczak Ewa, Jasińska Izabela

机构信息

Faculty of Material Technologies and Textile Design, Institute of Architecture of Textiles, Lodz University of Technology, 116 Zeromskiego St., 90-924 Lodz, Poland.

Lukasiewicz Research Network-Textile Research Institute, 5/15 Brzezińska St., 92-103 Lodz, Poland.

出版信息

Materials (Basel). 2021 Oct 19;14(20):6220. doi: 10.3390/ma14206220.

Abstract

Noise pollution from the environment may wreak havoc on a person's wellbeing. Numerous sound-absorbing materials are employed to address these issues, one of which is textile-woven fabrics. In this study, 12 woven textiles with four different weave structures (plain, rib, sateen, and twill) and those formed from three distinct polyester yarns were evaluated for their sound absorption properties using an impedance tube. The study was conducted within the range of 80-5000 (Hz) frequency. Part of the investigation was measuring different layers of woven fabrics under three different measuring conditions. Firstly, only woven fabrics were evaluated. Following that, woven and nonwoven textiles were measured. The third variant, in addition to the woven fabrics, included an air gap. In addition, this study includes tests and analyses of the effect of roughness and porosity of the fabric structure on the effectiveness of noise reduction by woven fabrics. The absorption capacity of plain fabric is higher at lower frequencies than other woven fabrics. Other weave structures noise reduction efficiency is higher as the frequency range increases. The absorption efficiency of plain fabric decreases with fabric layering. Utilizing woven fabric combined with nonwoven fabric reduces noise more effectively than the air gap variant. Low surface roughness and a highly porous surface of the fabric indicate a high noise reduction coefficient (NRC).

摘要

来自环境的噪音污染可能会对人的健康造成严重破坏。人们采用了许多吸音材料来解决这些问题,其中之一就是纺织织物。在本研究中,使用阻抗管对12种具有四种不同织物结构(平纹、罗纹、缎纹和斜纹)且由三种不同聚酯纱线制成的机织纺织品的吸音性能进行了评估。该研究在80 - 5000(Hz)频率范围内进行。部分研究内容是在三种不同测量条件下测量机织织物的不同层数。首先,仅对机织织物进行评估。随后,对机织和非机织纺织品进行测量。第三种变体除了机织织物外,还包括一个气隙。此外,本研究还包括对织物结构的粗糙度和孔隙率对机织织物降噪效果的影响进行测试和分析。平纹织物在低频时的吸音能力比其他机织织物更强。随着频率范围的增加,其他织物结构的降噪效率更高。平纹织物的吸音效率随织物层数的增加而降低。将机织织物与非机织织物结合使用比气隙变体更有效地降低噪音。织物表面粗糙度低且表面孔隙率高表明降噪系数(NRC)高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f626/8539478/bc8b11fb94b9/materials-14-06220-g001.jpg

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