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Acoustical properties of highly porous fibrous materials

机译:高孔隙率纤维材料的声学特性

摘要

Highly porous, fibrous bulk sound absorbing materials are studied with a view toward understanding their acoustical properties and performance in a wide variety of applications including liners of flow ducts. The basis and criteria for decoupling of acoustic waves in the pores of the frame and compressional waves in the frame structure are established. The equations of motion are recast in a form that elucidates the coupling mechanisms. The normal incidence surface impedance and absorption coefficient of two types of Kevlar 29 and an open celled foam material are studied. Experimental values and theoretical results are brought into agreement when the structure factor is selected to provide a fit to the experimental data. A parametric procedure for achieving that fit is established. Both a bulk material quality factor and a high frequency impedance level are required to characterize the real and imaginary part of the surface impedance and absorption coefficient. A derivation of the concepts of equivalent density and dynamic resistance is presented.
机译:研究了高度多孔的纤维状块状吸声材料,以期了解其在各种应用(包括流道衬里)中的声学特性和性能。建立了框架孔中声波与框架结构中压缩波解耦的基础和标准。以阐明耦合机制的形式重铸了运动方程。研究了两种Kevlar 29和开孔泡沫材料的法向入射表面阻抗和吸收系数。当选择结构因子以适合实验数据时,实验值和理论结果是一致的。建立用于实现该拟合的参数过程。表征表面阻抗和吸收系数的实部和虚部都需要块状材料品质因数和高频阻抗水平。提出了等效密度和动态电阻的概念的推导。

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  • 作者

    Lambert R. F.;

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  • 年度 1979
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