Peng Wenqiang, Bi Shaohua, Shen Xinmin, Yang Xiaocui, Yang Fei, Wang Enshuai
College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China.
Field Engineering College, Army Engineering University of PLA, Nanjing 210007, China.
Materials (Basel). 2023 Jun 9;16(12):4298. doi: 10.3390/ma16124298.
In order to achieve a balance between sound insulation and ventilation, a novel acoustic metamaterial of air-permeable multiple-parallel-connection folding chambers was proposed in this study that was based on Fano-like interference, and its sound-insulation performance was investigated through acoustic finite element simulation. Each layer of the multiple-parallel-connection folding chambers consisted of a square front panel with many apertures and a corresponding chamber with many cavities, which were able to extend both in the thickness direction and in the plane direction. Parametric analysis was conducted for the number of layers and turns , the thickness of each layer , the inner side lengths of the helical chamber , and the interval among the various cavities. With the parameters of = 10, = 1, = 10 mm, = 28 mm, and = 1 mm, there were 21 sound-transmission-loss peaks in the frequency range 200-1600 Hz, and the sound-transmission loss reached 26.05 dB, 26.85 dB, 27.03 dB, and 33.6 dB at the low frequencies 468 Hz, 525 Hz, 560 Hz, and 580 Hz, respectively. Meanwhile, the corresponding open area for air passage reached 55.18%, which yielded a capacity for both efficient ventilation and high selective-sound-insulation performance.
为了在隔音和通风之间取得平衡,本研究基于类法诺干涉提出了一种新型的透气多并联折叠腔声学超材料,并通过声学有限元模拟研究了其隔音性能。多并联折叠腔的每一层都由一个带有许多孔的方形前面板和一个带有许多腔的相应腔室组成,它们能够在厚度方向和平面方向上延伸。对层数和匝数、每层的厚度、螺旋腔的内侧边长以及各个腔之间的间隔进行了参数分析。当参数为层数 = 10、匝数 = 1、每层厚度 = 10毫米、螺旋腔内侧边长 = 28毫米、间隔 = 1毫米时,在200 - 1600赫兹的频率范围内有21个传声损失峰值,并且在468赫兹、525赫兹、560赫兹和580赫兹的低频处传声损失分别达到26.05分贝、26.85分贝、27.03分贝和33.6分贝。同时,相应的空气流通开口面积达到55.18%,这实现了高效通风和高选择性隔音性能。