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Fractal acoustic metamaterials for transformer noise reduction

机译:分形声超材料用于降低变压器的噪声

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Different from the early acoustic metamaterials, we draw on the application of the Hilbert curve in the radio frequency identification tag antenna, to make Hilbert fractal acoustic metamaterials (HFAMMs) with a self-similar fractal structure. This type of ventilated, sub-wavelength acoustic metamaterial has a relatively high reflection coefficient near the anti-resonance frequencies, resulting in high sound transmission loss (TL). The TL of the HFAMMs increases with the decrease in the waveguide width; similarly, the number of frequency bands of acoustic insulation increases and the frequency bands of sound insulation shift to low frequencies with the increase in the fractal order. The experimental results show that due to the viscothermal losses, the transmission coefficient at the resonant frequencies is greatly weakened, so that the HFAMM has broadband sound insulation performance. The TL of the third-order HFAMM can reach more than 30 dB at the main frequencies of the transformer noise. Furthermore, based on the method of selecting the optimal HFAMMs, we can easily design the HFAMMs suitable for the frequency bands of the noise need to be reduced; therefore, there is a broad application prospect in the field of noise reduction especially for low frequency noise. Published by AIP Publishing.
机译:与早期的声学超常材料不同,我们利用希尔伯特曲线在射频识别标签天线中的应用,使希尔伯特分形声学超常材料(HFAMM)具有自相似的分形结构。这种类型的通风的亚波长声学超材料在反共振频率附近具有相对较高的反射系数,从而导致较高的声音传输损耗(TL)。 HFAMM的TL随着波导宽度的减小而增加;类似地,随着分形阶数的增加,隔音层的频带数增加并且隔音层的频带移向低频。实验结果表明,由于粘热损耗,谐振频率处的传输系数大大降低,因此HFAMM具有宽带隔声性能。在变压器噪声的主要频​​率处,三阶HFAMM的TL可以达到30 dB以上。此外,基于选择最佳HFAMM的方法,我们可以轻松地设计适合于需要降低噪声频带的HFAMM。因此,在降噪领域,尤其是在低频噪声方面具有广阔的应用前景。由AIP Publishing发布。

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