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Improving sound absorption properties of microslit absorbers with flexible tube bundles

机译:使用挠性管束改善微缝吸收器的吸声性能

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Perforated and microperforated panels have been widely used in sound absorption applications. Recently, a perforated panel resonator with flexible tube bundles and double-leaf microperforated panels have been explored to broaden the absorption frequency range, respectively. To take advantages of both methods, a new type of sound absorber is proposed in this paper for better absorption characteristics. The developed sound absorber has a double-layer structure, which is composed of a microslit absorber incorporated as the first layer and a perforated panel resonator with flexible tube bundles embedded as the second layer. The absorption characteristics of the single-layer and double-layer sound absorbing structures with same cavity depths are measured in a standing wave tube. Experimental results demonstrate that the presented absorber provides more effective sound absorption than conventional single layer perforated panel resonator with flexible tube bundles and microslit absorbers in terms of the absorption coefficient and frequency bandwidth, and the perforated panel resonator with flexible tube bundles can be used with traditional resonators in expectation of increasing the sound absorption at lower and median frequencies.
机译:穿孔板和微穿孔板已广泛用于吸声应用。最近,已经研究了具有挠性管束的穿孔板谐振器和双叶微穿孔板,以分别扩大吸收频率范围。为了利用这两种方法的优势,本文提出了一种新型的吸声器,以具有更好的吸收特性。所开发的吸声器具有双层结构,该结构由结合为第一层的微缝吸收器和带有嵌入第二层的柔性管束的多孔板谐振器组成。在驻波管中测量具有相同腔深度的单层和双层吸声结构的吸收特性。实验结果表明,与传统的带挠性管束的单层多孔板谐振器和微缝吸收器相比,本发明的吸声器提供了更有效的吸声效果,带挠性管束的带孔板谐振器可与传统的挠性管束一起使用。期望增加低频和中频处的声音吸收的谐振器。

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