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Bandgap of flexural wave in periodic bi-layer beam

机译:周期性双层梁中弯曲波的带隙

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A periodic bi-layer beam structure is proposed and the bandgap characteristic of flexural wave is studied in this paper. The single cell is made up of two bi-layer beams with four components. For the infinite structure, the flexural wave bandgap frequency algorithm is theoretically derived through Timoshenko beam theory, Hamilton principle, Bloch-Floquet theory and transfer matrix method. An analytical example is presented to illustrate the bandgap characteristic and FEA software simulation is conducted to demonstrate the validation of the algorithm. For the finite structure, the vibration transmission characteristic is studied with FEA software to show the flexural wave attenuation behavior of the periodic bi-layer beam. The results reveal that, the flexural wave is attenuated gradually in the stopband along the direction of wave propagation, while in the passband, it will propagate without attenuation. Comparisons with periodic single layer beam are studied to verify the convenience and flexibility of bi-layer beam. Finally, parametric influences on bandgaps are discussed, which will help the designers to make a better design for vibration reduction.
机译:提出了周期性的双层光束结构,并在本文中研究了弯曲波的带隙特性。单个电池由具有四个部件的两个双层梁组成。对于无限的结构,弯曲波带隙频率算法通过Timoshenko光束理论,汉密尔顿原理,Bloch-Floquet理论和转移矩阵法理论上衍生。提出了一个分析示例以说明带隙特性和FEA软件仿真以演示算法的验证。对于有限结构,使用FEA软件研究振动传输特性,以显示周期性双层光束的弯曲波衰减行为。结果表明,弯曲波沿着波传播方向逐渐衰减,而在通带中,它将在不衰减的情况下传播。研究了具有周期性单层光束的比较,以验证双层光束的便利性和灵活性。最后,讨论了对带隙的参数影响,这将有助于设计人员对减振的振动设计更好。

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