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Novel cross shape phononic crystals with broadband vibration wave attenuation characteristic: Design, modeling and testing

机译:具有宽带振动波衰减特性的新型交叉形状晶体:设计,建模和测试

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摘要

In this paper, elastic wave dispersion characteristics of two novel unit-cells are numerically and experimentally studied. Based on Bloch?s theorem for infinite cellular structures, the Eigen-frequency problem for the unit-cells is solved through a finite element scheme. These novel unit-cells are inspired from Maltese-Cross shape and named unit-cell I and II, while the unit-cell II is created from replacing side ligaments of unit-cell I with triangles. It is observed that these novel unit-cells are capable of providing over 200% phononic bandgap coverage factor over the low-frequency range of 0?12 kHz. Also, the effects of replacing side ligaments with triangles on shifting bandgap pattern to lower frequencies are investigated. The unit-cells are then utilized to construct a metaplate to filter two-dimensional wave?s propagation through the plate. The plate and its cellular segment are simulated with the finite element method, and they are fabricated through laser the cutting process. Frequency analysis is performed on the numerical and experimental models, and results are compared with the bandgaps obtained from periodic Bloch?s theorem. It is shown that a perfect match is observed between experimental and numerical results. The present study provides the practical application of new phononic crystals as a frequency tool to stop the propagation of elastic waves while the location of bandgaps can be tuned with the topology of unit-cells.
机译:本文在数值和实验研究了两个新型单元细胞的弹性波分散特性。基于针对无限蜂窝结构的Bloch的定理,通过有限元方案来解决单位电池的特征频率问题。这些新颖的单位细胞受到马耳他交叉形状和命名的单胞单元I和II的影响,而单位细胞II通过用三角形替换单位细胞I的侧韧带而产生。观察到这些新颖的单元 - 细胞能够在0≤2kHz的低频范围内提供超过200%的声音带隙覆盖系数。而且,研究了用三角形替换侧韧带在将带隙图案移位到较低频率的副韧带。然后利用单位单元来构建通过板过滤二维波的传播。用有限元方法模拟板及其蜂窝段,它们通过激光切割过程制造。频率分析是对数值和实验模型进行的,并将结果与​​来自周期性的Bloch·S定理获得的带隙进行比较。结果表明,在实验和数值结果之间观察到完美匹配。本研究提供了新的声子晶体作为频率工具的实际应用,以停止弹性波的传播,同时可以用单元电池的拓扑调整带隙的位置。

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