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Investigation of the sound-absorbing behavior of fiber assemblies

机译:纤维组件的吸声性能研究

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In this work the acoustic absorption properties of four common fiber assemblies were studied in the frequency region ofn800–6300 Hz using the standing wave tube method. To validate the present experimental setup, firstly the soundnabsorption property of a rubber foam sample commonly used for noise control was measured, and then comparednwith the existing data. The absorption coefficients were measured by varying the fiber type, mass, sound frequency, andnair gap in the tube in order to examine the contribution of solid fiber against the air in a fibrous assembly. Using annexisting theoretical analysis, the relationships between the average diameter of effective pores and the fiber assemblynmass for the four fiber types were derived to illustrate certain important connections. Another theoretical model wasnproposed to analyze the absorption mechanism and predict the absorption coefficient as a function of frequency.
机译:在这项工作中,使用驻波管方法研究了在n800–6300 Hz频率范围内四种常见纤维组件的吸声特性。为了验证当前的实验设置,首先测量通常用于噪声控制的橡胶泡沫样品的吸声性能,然后将其与现有数据进行比较。通过改变管中的纤维类型,质量,声频和气隙来测量吸收系数,以检查固体纤维对纤维组件中空气的影响。使用兼并理论分析,推导了四种纤维类型的有效孔的平均直径与纤维组装质量之间的关系,以说明某些重要的联系。提出了另一个理论模型来分析吸收机理并预测吸收系数随频率的变化。

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