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首页> 外文期刊>Journal of Vibration and Acoustics >Complete Bandgap in Three-Dimensional Holey Phononic Crystals With Resonators
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Complete Bandgap in Three-Dimensional Holey Phononic Crystals With Resonators

机译:带谐振器的三维有孔声子晶体中的完整带隙

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In this paper, the bandgap properties of three-dimensional holey phononic crystals with resonators are investigated by using the finite element method. The resonators are periodically arranged cubic lumps in the cubic holes connected to the matrix by narrow connectors. The influence of the geometry parameters of the resonators on the bandgap is discussed. In contrast to a system with cubic or spherical holes, which has no bandgaps, systems with resonators can exhibit complete bandgaps. The bandgaps are significantly dependent upon the geometry of the resonators. By the careful design of the shape and size of the resonator, a bandgap that is lower by an order of magnitude than the Bragg bandgap can be obtained. The vibration modes at the band edges of the lowest bandgaps are analyzed in order to understand the mechanism of the bandgap generation. It is found that the emergence of the bandgap is due to the local resonance of the resonators. Spring-mass models or spring-pendulum models are developed in order to evaluate the frequencies of the bandgap edges. The study in this paper is relevant to the optimal design of the bandgaps in light porous materials.
机译:本文利用有限元方法研究了带有谐振器的三维多孔声子晶体的带隙特性。谐振器周期性地排列在通过窄连接器连接到矩阵的立方孔中的立方块。讨论了谐振器的几何参数对带隙的影响。与没有带隙的具有立方或球形孔的系统相比,具有谐振器的系统可以表现出完整的带隙。带隙在很大程度上取决于谐振器的几何形状。通过精心设计谐振器的形状和尺寸,可以获得比布拉格带隙低一个数量级的带隙。分析最低带隙的带边缘处的振动模式,以了解带隙产生的机理。发现带隙的出现是由于谐振器的局部谐振。为了评估带隙边缘的频率,开发了弹簧质量模型或弹簧摆模型。本文的研究与轻质多孔材料中带隙的优化设计有关。

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