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Multi-cavity locally resonant structure with the low frequency and broad band-gaps

机译:具有低频和宽带隙的多腔局部谐振结构

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A multi-cavity periodic structure with the characteristic of local resonance was proposed in the paper. The low frequency band-gap structure was comparatively analyzed by the finite element method (FEM) and electric circuit analogy (ECA). Low frequency band-gap can be opened through the dual influence of the coupling’s resonance in the cavity and the interaction among the couplings between structures. Finally, the influence of the structural factors on the band-gap was analyzed. The results show that the structure, which is divided into three parts equally, has a broader effective band-gap below the frequency of 200 Hz. It is also proved that reducing the interval between unit structures can increase the intensity of the couplings among the structures. And in this way, the width of band-gap would be expanded significantly. Through the parameters adjustment, the structure enjoys a satisfied sound insulation effect below the frequency of 500Hz. In the area of low frequency noise reduction, the structure has a lot of potential applications.
机译:提出了一种具有局部共振特性的多腔周期结构。通过有限元法(FEM)和电路模拟法(ECA)对低频带隙结构进行了比较分析。通过耦合在空腔中的共振以及结构之间的耦合之间的相互作用的双重影响,可以打开低频带隙。最后,分析了结构因素对带隙的影响。结果表明,该结构被平均分为三部分,在200 Hz频率以下具有较宽的有效带隙。还证明减小单元结构之间的间隔可以增加结构之间的耦合强度。以此方式,带隙的宽度将显着扩大。通过参数调整,结构在500Hz以下的频率下具有令人满意的隔音效果。在降低低频噪声方面,该结构具有许多潜在的应用。

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