Zhou Zi-Jian, Ao Wei, Fan Li, Zhang Shu-Yi, Cheng Li-Ping, Xu Xiao-Dong, Zhao Jin-Yu, Zhang Hui
Lab of Modern Acoustics, Institute of Acoustics, Nanjing University, Nanjing, 210093, China.
Key Laboratory of Architectural Acoustic Environment of Anhui Higher Education Institutes, Anhui Jianzhu University, Hefei, 230601, China.
Sci Rep. 2022 Nov 8;12(1):19034. doi: 10.1038/s41598-022-21673-8.
It is challenging to insulate sound transmission in low frequency-bands without blocking the air flow in a pipe. In this work, a small and light membrane-based cubic sound insulator is created to block acoustic waves in multiple low frequency-bands from 200 to 800 Hz in pipes. Due to distinct vibration modes of the membrane-type faces of the insulator and co-action of acoustic waves transmitting along different paths, large sound attenuation is achieved in multiple frequency-bands, and the maximum transmission loss reaches 25 dB. Furthermore, because the sound insulator with a deep subwavelength size is smaller than the cross-sectional area of the pipe, it does not block ventilation along the pipe.
在不阻碍管道内气流的情况下,隔绝低频段的声音传播具有挑战性。在这项工作中,制造了一种基于薄膜的小型轻质立方体形隔音器,用于阻隔管道中200至800赫兹多个低频段的声波。由于隔音器薄膜型表面的独特振动模式以及沿不同路径传播的声波的共同作用,在多个频段实现了大幅的声音衰减,最大传输损耗达到25分贝。此外,由于这种具有深亚波长尺寸的隔音器小于管道的横截面积,它不会阻碍沿管道的通风。