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首页> 外文期刊>The Journal of the Acoustical Society of America >Effect of circumferential edge constraint on the acoustical properties of glass fiber materials
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Effect of circumferential edge constraint on the acoustical properties of glass fiber materials

机译:圆周边缘约束对玻璃纤维材料声学特性的影响

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摘要

It has been noted that the absorption coefficient of a porous material sample placed in a standing wave tube is affected at low frequencies by the nature of the sample's edge constraint. The edge constraint has the effect of inhibiting the motion of the solid phase of the material. The latter can be strongly coupled to the material's fluid phase, and hence the incident sound field, by viscous means at low frequencies. Here the absorption effect noted earlier was demonstrated experimentally. The main focus of the work, however, was on a corresponding transmission loss effect. The material considered was aviation grade glass fiber in two densities. It was found that the edge constraint results in a shearing resonance of the sample at which frequency the transmission loss is a minimum: below that frequency the transmission loss increases with decreasing frequency to a finite low frequency limit proportional to the sample's flow resistance. It was found that the constraint effect could be modeled by using a poroelastic finite element model. It was also found that the transmission loss of the edge-constrained samples approximated that of unconstrained samples at frequencies above approximately 100 Hz when measured in a 10-cm-diam tube.
机译:已经注意到,放置在驻波管中的多孔材料样品的吸收系数在低频受到样品边缘约束性质的影响。边缘约束具有抑制材料固相运动的作用。后者可以通过粘性手段在低频下牢固地耦合到材料的液相,从而牢固地耦合到入射声场。在此通过实验证明了前面提到的吸收效果。但是,这项工作的主要重点在于相应的传输损耗效应。所考虑的材料是具有两种密度的航空级玻璃纤维。发现边缘限制导致样品的剪切共振,在该频率下,传输损耗为最小:在该频率以下,传输损耗随频率的降低而增加到与样品的流动阻力成比例的有限的低频极限。发现约束效应可以通过使用多孔弹性有限元模型来建模。还发现,当在直径为10 cm的管中进行测量时,在约100 Hz以上的频率下,边缘约束样本的传输损耗近似于非约束样本的传输损耗。

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