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首页> 外文期刊>Journal of Sound and Vibration >Experimental full wavefield reconstruction and band diagram analysis in a single-phase phononic plate with internal
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Experimental full wavefield reconstruction and band diagram analysis in a single-phase phononic plate with internal

机译:具有内部单相声入板的实验性全波场重建与频带图分析

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摘要

Research on phononic crystal architectures has produced many interesting designs in the past years, with useful wave manipulation properties. However, not all of the proposed designs can lead to convenient realizations for practical applications, and only a limited number of them have actually been tested experimentally to verify numerical estimations and demonstrate their feasibility. In this work, we propose a combined numerical-experimental procedure to characterize the dynamic behavior of metamaterials, starting from a simplified 2D design to a real 3D manufactured structure. To do this, we consider a new design of a resonator-type geometry for a phononic crystal, and verify its wave filtering properties in wave propagation experiments. The proposed geometry exploits a circular distribution of cavities in a homogeneous material, leading to a central resonator surrounded by thin ligaments and an external matrix. Parametric simulations are performed to determine the optimal thickness of this design, leading to a large full band gap in the kHz range. Full-field experimental characterization of the resulting phononic crystal using a scanning laser Doppler vibrometer is then performed, showing excellent agreement with numerically predicted band gap properties and with their resulting effects on propagating waves. The outlined procedure can serve as a useful step towards a standardization of metamaterial development and validation procedures.
机译:声子晶体结构的研究在过去几年中产生了许多有趣的设计,具有有用的波操纵特性。然而,并不是所有提出的设计都能方便地实现实际应用,而且只有有限数量的设计实际进行了实验测试,以验证数值估计并证明其可行性。在这项工作中,我们提出了一个组合的数值实验程序来描述超材料的动态行为,从简化的二维设计到真实的三维制造结构。为此,我们考虑声子晶体谐振器型几何结构的新设计,并验证其在波传播实验中的波滤波特性。所提出的几何结构利用均匀材料中空腔的圆形分布,形成由薄韧带和外部基质包围的中心谐振器。通过参数模拟来确定这种设计的最佳厚度,从而在kHz范围内获得较大的全带隙。然后,利用扫描激光多普勒测振仪对所得到的声子晶体进行了全场实验表征,结果表明,这与数值预测的带隙特性及其对传播波的影响非常吻合。概述的程序可作为超材料开发和验证程序标准化的有用步骤。

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