天然环保材料毡和地毯的声学特性研究

Haydar Aygün
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引用次数: 5

摘要

包括多孔材料在内的吸声材料被广泛用于噪声控制。多孔材料中最广泛开发和公认的吸收机制是由于固体和流体之间的相对运动而产生的粘性摩擦。研究了传统羊毛编织(地毯)和非织造(毛毡)材料的声学性能。采用驻波管法测定了毛毡的吸波系数,并对有无空腔进行了测定。将数据与使用Delany和Bazely定律确定的预测进行比较。观察到数据和预测之间非常吻合。用阻抗枪技术在更宽的频率范围内测量了两种材料的吸声系数。阻抗枪法测得的吸收系数表明,毛毡在中高频段的吸收系数高于地毯的吸收系数。此外,还测量了毛毡在圆形导管中的插入损耗(IL)。结果表明,毛毡对声压级的衰减作用在1 ~ 10 dB之间。
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Characterization of Acoustical Properties of Felt and Carpet Made of Natural and Environmentally Friendly Materials
Sound absorbers including porous materials are used widely for noise control. The most widely-exploited and acknowledged absorption mechanism in porous materials is viscous friction due to relative motion between solid and fluid. Acoustical performance of woven (carpet) and nonwoven (felt) materials made of wool using a traditional technique was investigated. Absorption coefficient of felt was measured using standing wave tube method with and without an air cavity. Data were compared with predictions determined using the laws of Delany and Bazely. Very good agreement between data and predictions was observed. Sound absorption coefficients of both materials also were measured using an impedance gun technique over a wider frequency range. Absorption coefficient obtained using impedance gun method shows that the absorption coefficient of felt is higher than the absorption coefficient of carpet for mid and higher frequencies. Furthermore insertion loss (IL) of the felt was measured in a circular duct. It is found that felt can attenuate sound pressure level between 1 dB and 10 dB.
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