Cheng Hongxiang, Yang Fei, Shen Xinmin, Yang Xiaocui, Zhang Xiaonan, Bi Shaohua
Air Force Second Aviation Equipment Training Base, Shenyang 110000, China.
Field Engineering College, Army Engineering University of PLA, Nanjing 210007, China.
Materials (Basel). 2023 Jul 31;16(15):5378. doi: 10.3390/ma16155378.
The limited occupied space and various noise spectrum requires an adjustable sound absorber with a smart structure and tunable sound absorption performance. The hexagonal acoustic metamaterial cell of the multiple parallel-connection resonators with tunable perforating rate was proposed in this research, which consisted of six triangular cavities and six trapezium cavities, and the perforation rate of each cavity was adjustable by moving the sliding block along the slideway. The optimal geometric parameters were obtained by the joint optimization of the acoustic finite element simulation and cuckoo search algorithm, and the average sound absorption coefficients in the target frequency ranges of 650-1150 Hz, 700-1200 Hz and 700-1000 Hz were up to 0.8565, 0.8615 and 0.8807, respectively. The experimental sample was fabricated by the fused filament fabrication method, and its sound absorption coefficients were further detected by impedance tube detector. The consistency between simulation data and experimental data proved the accuracy of the acoustic finite element simulation model and the effectiveness of the joint optimization method. The tunable sound absorption performance, outstanding low-frequency noise reduction property, extensible outline structure and efficient space utilization were favorable to promote its practical applications in noise reduction.
有限的占用空间和多样的噪声频谱需要一种具有智能结构和可调吸声性能的吸声器。本研究提出了一种具有可调穿孔率的多并联谐振器六边形声学超材料单元,它由六个三角形腔和六个梯形腔组成,每个腔的穿孔率可通过滑块沿滑道移动来调节。通过声学有限元模拟和布谷鸟搜索算法的联合优化获得了最佳几何参数,在650 - 1150 Hz、700 - 1200 Hz和700 - 1000 Hz目标频率范围内的平均吸声系数分别高达0.8565、0.8615和0.8807。实验样品采用熔融沉积成型法制作,并通过阻抗管探测器进一步检测其吸声系数。模拟数据与实验数据的一致性证明了声学有限元模拟模型的准确性和联合优化方法的有效性。可调的吸声性能、出色的低频降噪特性、可扩展的外形结构和高效的空间利用有利于推动其在降噪方面的实际应用。