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High-intensity sound in air saturated fibrous bulk porous materials

机译:空气饱和的纤维状疏松多孔材料中的高强度声音

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摘要

The interaction high-intensity sound with bulk porous materials in porous materials including Kevlar 29 is reported. The nonlinear behavior of the materials was described by dc flow resistivity tests. Then acoustic propagation and reflection were measured and small signal broadband measurements of phase speed and attenuation were carried out. High-intensity tests were made with 1, 2, and 3 kHz tone bursts to measure harmonic generation and extra attenuation of the fundamental. Small signal standing wave tests measured impedence between 0.1 and 3.5 kHz. High level tests with single cycle tone bursts at 1 to 4 kHz show that impedance increases with intensity. A theoretical analysis is presented for high-porosity, rigid-frame, isothermal materials. One dimensional equations of motion are derived and solved by perturbation. The experiments show that there is excess attenuation of the fundamental component and in some cases a close approach to saturation. A separate theoretical model, developed to explain the excess attenuation, yields predictions that are in good agreement with the measurements. Impedance and attenuation at high intensities are modeled.
机译:据报道,在包括凯夫拉尔29在内的多孔材料中,高强度声音与多孔材料的相互作用。通过直流流动电阻率测试描述了材料的非线性行为。然后测量声传播和反射,并进行相速度和衰减的小信号宽带测量。用1、2和3 kHz音调脉冲串进行了高强度测试,以测量谐波的产生和基频的额外衰减。小信号驻波测试测量的阻抗介于0.1和3.5 kHz之间。对1至4 kHz的单周期音调猝发进行的高级别测试表明,阻抗随强度而增加。对高孔隙率,刚性框架,等温材料进行了理论分析。导出一维运动方程,并通过摄动对其求解。实验表明,基波分量衰减过大,在某些情况下接近饱和。开发了一个单独的理论模型来解释过大的衰减,得出的预测与测量结果非常吻合。对高强度下的阻抗和衰减建模。

著录项

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    Kuntz, H. L., II;

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  • 年度 1982
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