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Effects of fiber motion on the acoustic behavior of an anisotropic, flexible fibrous material

机译:纤维运动对各向异性,柔性纤维材料声学特性的影响

摘要

The acoustic behavior of a flexible fibrous material was studied experimentally. The material consisted of cylindrically shaped fibers arranged in a batting with the fibers primarily aligned parallel to the face of the batting. This type of material was considered anisotropic, with the acoustic propagation constant depending on whether the dirction of sound propagation was parallel or normal to the fiber arrangement. Normal incidence sound absorption measurements were taken for both fiber orientations over the frequency range 140 to 1500 Hz and with bulk densities ranging from 4.6 to 67 kg/cu m. When the sound propagated in a direction normal to the fiber alignment, the measured sound absorption showed the occurrence of a strong resonance, which increased absorption above that attributed to viscous and thermal effects. When the sound propagated in a direction parallel to the fiber alignment, indications of strong resonances in the data were not present. The resonance in the data for fibers normal to the direction of sound propagation is attributed to fiber motion. An analytical model was developed for the acoustic behavior of the material displaying the same fiber motion characteristics shown in the measurements.
机译:实验研究了柔性纤维材料的声学性能。该材料由排列成棉絮的圆柱形纤维组成,这些纤维主要平行于棉絮的表面排列。这种材料被认为是各向异性的,其声传播常数取决于声传播的方向是平行还是垂直于纤维排列。在140至1500 Hz频率范围内对两种纤维取向进行了法向入射吸声测量,堆积密度为4.6至67 kg / cu m。当声音沿垂直于纤维排列方向的方向传播时,测得的声音吸收显示出强烈的共振,从而使吸收增加,超过了归因于粘性和热效应的吸收。当声音沿平行于光纤排列的方向传播时,数据中没有强烈共振的迹象。垂直于声音传播方向的纤维数据中的共振归因于纤维运动。针对材料的声学特性开发了一个分析模型,该模型显示出与测量中相同的纤维运动特性。

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