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首页> 外文期刊>Journal of Theoretical and Applied Mechanics >BANDGAP PROPERTIES IN LOCALLY RESONANT PHONONIC CRYSTAL DOUBLE PANEL STRUCTURES WITH PERIODICALLY ATTACHED PILLARS
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BANDGAP PROPERTIES IN LOCALLY RESONANT PHONONIC CRYSTAL DOUBLE PANEL STRUCTURES WITH PERIODICALLY ATTACHED PILLARS

机译:具有周期性附着柱的局部共振声晶体双板结构的能隙特性

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摘要

The locally resonant (LR) phononic crystal double panel structure made of a two-dimensional periodic array of a two-component cylindrical LR pillar connected between the upper and lower plates is proposed, and the bandgap properties of the structure are investigated theoretically in this paper. The band structures, displacement fields of eigenmodes and transmission power spectrums of the corresponding 8x8 finite structure are calculated by the finite element method. Numerical results and further analysis demonstrate that a band gap with a low starting frequency and a wide band width is opened by the coupling between dominant vibrations of the pillars and plate modes of the upper and lower plates when the vibration source and the receiver are considered on different sides of the structure. By comparing the band structures and displacement fields of the double panel and those of the single plate with the same parameters, many common characteristics are displayed. Then, the influence of geometrical parameters on the band gap are studied and understood with the help of a simple 'spring-mass' model.
机译:提出了一种由上下两块板之间连接的两分量圆柱LR柱的二维周期阵列构成的局部共振声子晶体双面板结构,并从理论上研究了该结构的带隙特性。 。通过有限元方法计算了相应的8x8有限结构的能带结构,本征模位移场和传输功率谱。数值结果和进一步的分析表明,当考虑振动源和接收器时,支柱的主振动与上下板的板模之间的耦合会打开一个低起始频率和宽带宽的带隙。结构的不同方面。通过比较具有相同参数的双面板和单板的能带结构和位移场,可以显示许多共同的特性。然后,借助于简单的“弹簧质量”模型,研究并理解了几何参数对带隙的影响。

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