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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Local resonances-induced low-frequency band gaps in two-dimensional phononic crystal slabs with periodic stepped resonators
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Local resonances-induced low-frequency band gaps in two-dimensional phononic crystal slabs with periodic stepped resonators

机译:带有周期性阶梯谐振器的二维声子晶体平板中局部谐振引起的低频带隙

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摘要

In this paper, the numerical investigation of Lamb wave propagation in two-dimensional phononic crystals composed of an array of stepped resonators on a thin slab is presented. The dispersion relations, power transmission spectra and spectra of resonances are studied using a finite-element method. Because of the simultaneous mechanisms of the local resonances and Bragg scattering, the structures exhibit low-frequency forbidden bands and Bragg band gaps, which can be effectively shifted by changing the resonator geometries as well as the lattice symmetries of the resonator array. As a result, a low-frequency gap within the audible regime can be demonstrated. Furthermore, for a finite phononic crystal slab, the calculated transmission and resonance spectra show an evident resonance nature which can be directly related to the formation of the low-frequency gaps. Based on the spectra of elastic waves through the single-layer stepped resonators, the resonances of the stepped resonators are found to either induce high reflection or intensify the transmission. The effects of different excitation conditions for generating specific slab modes with different polarization states on the acoustic energy transmission and attenuation are also studied. The results show that the polarization states of the incident slab modes influence the spectra of resonances, power transmission and attenuation.
机译:本文对兰姆波在二维声子晶体中的传播进行了数值研究,该二维声子晶体由阶梯状谐振器阵列组成,在薄板上。使用有限元方法研究了色散关系,功率传输谱和共振谱。由于局部共振和布拉格散射的同时机制,该结构表现出低频禁带和布拉格带隙,这可以通过改变谐振器的几何形状以及谐振器阵列的晶格对称性而有效地移动。结果,可以证明可听范围内的低频间隙。此外,对于有限声子晶体平板,计算出的透射和共振谱显示出明显的共振性质,其可以直接与低频间隙的形成有关。根据通过单层步进谐振器的弹性波频谱,发现步进谐振器的谐振会引起高反射或增强传输。还研究了不同激发条件下产生具有不同极化态的特定平板模式对声能传输和衰减的影响。结果表明,入射平板模式的偏振态会影响共振,功率传输和衰减的频谱。

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