Acoustic modeling of honeycomb structures for second load direction with damping consideration

IF 1.4 Q3 ACOUSTICS
S. Saffar
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引用次数: 1

Abstract

The control of low-frequency noise in buildings has become a critical issue because of the inadequate sound insulation in low frequencies (<200 Hz) for most partitions and doors. In the present study, an analytical model has been proposed to specify the relationship between the acoustic parameters such as acoustic impedance of honeycomb and the honeycomb geometry. In this regards, three materials (Polycarbonate, Polypropylene, and Polyurethane), seven angles (45°, 30°, 15°, 0°, −15°, −30°, −45°), and three cell arrangement (1 × 1, 2 × 2, and 3 × 3) were considered to find out the effect of these parameters on the sound absorption coefficient. Sound absorption in the frequency range of 1–500 Hz for angles of 45°, 30°, 15°, 0°, −15°, −30°, −45° was demonstrated using MATLAB software. A comparison of the results showed that the greater the angle’s absolute value, the more the sound absorption coefficient. By comparing all three materials’ absorption coefficient values, it was concluded that the 1 × 1 arrangement had greater absorption than the 2 × 2 and 3 × 3 arrangements. Also, the number of resonance peaks of polyurethane material for all angles was greater than the others in the same frequency range. Then, the panel with the honeycomb core of Polyurethane and 1 × 1 arrangement was recommended for cells with an internal angle of −45° in the present research case study for having more sound absorption.
考虑阻尼的蜂窝结构第二荷载方向的声学建模
由于低频(<200 Hz)。在本研究中,提出了一个分析模型来指定蜂窝的声阻抗等声学参数与蜂窝几何形状之间的关系。在这方面,三种材料(聚碳酸酯、聚丙烯和聚氨酯)、七个角度(45°、30°、15°、0°、−15°、−30°、−45°)和三个单元排列(1 × 1,2 × 2和3 × 3) 以找出这些参数对吸声系数的影响。1–500频率范围内的吸声 使用MATLAB软件演示了45°、30°、15°、0°、−15°、−30°、−45°角的Hz。结果比较表明,角度的绝对值越大,吸声系数越大。通过比较所有三种材料的吸收系数值,得出结论: × 1布置比2布置具有更大的吸收 × 2和3 × 3种安排。此外,在相同频率范围内,聚氨酯材料在所有角度下的共振峰数量都大于其他角度。然后,具有聚氨酯蜂窝芯和1 × 在本研究案例研究中,建议内角为−45°的细胞采用1排列,以获得更多的吸声效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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