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Experimental study for improving sound absorption of a composite helical-shaped porous structure using carbon fiber

机译:碳纤维改善复合螺旋形多孔结构吸声性能的实验研究

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A composite sound absorption structure constructed with fibrous layer and carbon fibers was proposed and its acoustic performance was experimentally studied. Proposed structure's sound absorption properties depended on the gap of the air cavity between fibrous layers. To increase the absorption efficiency, carbon fiber was applied between the gaps. The normal incidence sound absorption coefficients and specific acoustic impedance were measured with the two-microphone impedance tube method to determine the effects of the carbon fibers on the acoustic properties. Random incidence absorption coefficients were determined from the measured specific acoustic impedances of the proposed structures. The measured results were compared for various fractions of carbon fibers. Modified wave propagation equations with empirical density equations were suggested to predict the acoustic behavior of the proposed absorbers. After application of the carbon fibers, the composite helical-shaped sound absorber showed better sound absorption efficiency under both normal and random incidence conditions. This suggested that the carbon fibers introduced additional sound dissipation when properly distributed along the gap of the sound absorber. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种由纤维层和碳纤维构成的复合吸声结构,并对其声学性能进行了实验研究。拟议的结构的吸声性能取决于纤维层之间的气隙。为了提高吸收效率,在间隙之间使用了碳纤维。用两麦克风阻抗管法测量法向入射吸声系数和比声阻抗,以确定碳纤维对声学性能的影响。随机入射吸收系数由拟议结构的实测比声阻抗确定。比较了不同比例的碳纤维的测量结果。建议用经验密度方程修改波传播方程,以预测所提出的吸收器的声学特性。使用碳纤维后,复合螺旋形吸声器在正常和随机入射条件下均显示出更好的吸声效率。这表明,当碳纤维沿着吸声器的间隙正确分布时,会引入更多的声音消散。 (C)2016 Elsevier Ltd.保留所有权利。

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