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Fractal phenomenon in sound absorbing behavior of down fiber assembly

机译:羽绒纤维组件吸音行为中的分形现象

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摘要

X-ray computed tomography (CT) can quantify variations in microstructure of materials. In this paper, we first demonstrated that by using a micro-CT method, we can characterize the internal porous structures of different fiber assemblies. Furthermore, the fractal dimension of the porous areas can be calculated based on the acquired two-dimensional cross-sectional images of the assemblies. Then after measuring the sound absorption behaviors of the assemblies, correlations between the fractal dimension, the pore structural characteristics, and the acoustic absorption property are analyzed. Results show that for down fiber assemblies, the fractal dimension increases with fiber mass, and decreases with the porosity. Also the maximum absorption coefficient αm reaches a maximum value at a critical fractal dimension, while critical frequency fr continuously decreases with the fractal dimension all the time.
机译:X射线计算机断层扫描(CT)可以量化材料微观结构的变化。在本文中,我们首先证明了通过使用micro-CT方法,我们可以表征不同纤维组件的内部多孔结构。此外,可以根据采集的组件二维横截面图像计算多孔区域的分形维数。在测量组件的吸声行为后,分析了分形维数、孔隙结构特征和吸声特性之间的相关性。结果表明:羽绒纤维组件的分形维数随纤维质量的增加而增大,随孔隙率的增大而减小。最大吸收系数αm在临界分形维数处达到最大值,而临界频率fr随临界分形维数不断减小。

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