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Flexural Wave Band Gaps in a 1D Phononic Crystal Beam

机译:1D个声晶梁中的弯曲波段间隙

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The forced response of flexural waves propagating in a 1D phononic crystal (PC) beam and its band structure are investigated theoretically and experimentally. PC beam unit cell is composed by steel and polyethylene. The study is performed by using six methods, finite element (FE), spectral element (SE), wave finite element (WFE), wave spectral element (WSE), conventional plane wave expansion (CPWE) and improved plane wave expansion (IPWE). Simulated examples of a 1D PC beam considering unit cells of different sizes are analyzed. Forced response results are presented in the form of displacement, transmittance and receptance, and the elastic band structure is investigated using its real and imaginary (attenuation) parts. Numerical and analytical results of all approaches are in a good agreement, except by WFE and FE numerical results in high frequencies. The effect of the amounts of polyethylene on the attenuation constant is studied. Depending on the application, choosing polyethylene quantity correctly is not simple, because it is related to the unit cell size and in which frequency the band gap is opened up. An experiment with a 1D PC beam is proposed and numerical and analytical results can localize the band gap position and width close to the experimental results. A small Bragg-type band gap with low attenuation is observed between 405 and 720 Hz. The 1D PC beam with unit cells of steel and polyethylene presents potential application for vibration control.
机译:在理论上和实验上研究了在1D声子晶体(PC)束中传播的弯曲波的强制响应和其带结构。 PC梁单元电池由钢和聚乙烯组成。通过使用六种方法,有限元(Fe),光谱元件(WFE),波谱元件(WSE),传统的平面波膨胀(CPWE)和改进的平面波扩展(IPWE)来执行该研究。 。考虑考虑不同尺寸的单元电池的1D PC光束的模拟示例被分析。强制响应结果以位移,透射率和接收的形式呈现,并且使用其实部和虚部(衰减)部件来研究弹性带结构。所有方法的数值和分析结果都是良好的一致性,除了WFE和Fe数值结果高频率。研究了聚乙烯量对衰减常数的影响。根据应用,选择聚乙烯量正确并不简单,因为它与单元电池尺寸有关,并且带隙打开的频率。提出了一种具有1D PC光束的实验,数值和分析结果可以定位带隙位置和宽度接近实验结果。在405和720Hz之间观察到具有低衰减的小布拉格型带隙。具有钢和聚乙烯单元电池的1D PC光束呈现振动控制的潜在应用。

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