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Enlarging Sound Attenuation in the Low Frequency Domain by Giving a Poroelastic Material a Lamella Structure

机译:通过使多孔弹性材料具有薄片结构来扩大低频域中的声音衰减

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Compared with a uniform porous layer, arranging a poroelastic material following a lamella network structure provides additional sound absorption below the quarter wavelength resonance frequency, i.e. in the low frequency domain. The mechanisms involved in this additional sound absorption are highlighted by a numerical approach that incorporates geometric periodicity. It is shown that structural and viscous dissipation are combined within the lamellas when the shear and bending resonances of the lamellas are excited at oblique or grazing incidence. Since the frequency of the shear resonance is related to the thickness of the material whereas the bending resonance is also a function of the width of the lamellas, the frequencies at which additional sound absorption can be obtained are adjustable. Experiments are finally conducted on samples made of melamine foam lamellas that demonstrate the efficiency of this arrangement in (1) a free field at various oblique incidence angles and (2) in a duct with several orientations of the lamellas structure.
机译:与均匀的多孔层相比,按照薄片网络结构排列多孔弹性材料可在四分之一波长共振频率以下,即在低频域中提供额外的声音吸收。包含几何周期性的数值方法突出了这种额外的声音吸收所涉及的机制。结果表明,当倾斜或掠入射时,薄板的剪切和弯曲共振被激发时,薄板内部的结构和粘性耗散会结合在一起。由于剪切共振的频率与材料的厚度有关,而弯曲共振也是薄板宽度的函数,因此可以获得额外吸声的频率是可调的。最后,对由三聚氰胺泡沫薄板制成的样品进行了实验,证明了这种布置在(1)在各种倾斜入射角的自由场中和(2)在具有多个薄板结构取向的管道中的效率。

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