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Flexural vibration band gaps in thin plates with two-dimensional binary locally resonant structures

机译:具有二维二元局部共振结构的薄板中的弯曲振动带隙

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摘要

The complete flexural vibration band gaps are studied in the thin plates with two-dimensional binary locally resonant structures, i.e. the composite plate consisting of soft rubber cylindrical inclusions periodically placed in a host material. Numerical simulations show that the low-frequency gaps of flexural wave exist in the thin plates. The width of the first gap decreases monotonically as the matrix density increases. The frequency response of the finite periodic thin plates is simulated by the finite element method, which provides attenuations of over 20dB in the frequency range of the band gaps. The findings will be significant in the application of phononic crystals.
机译:在具有二维二元局部共振结构的薄板中研究了完整的弯曲振动带隙,即由周期性地放置在主体材料中的软橡胶圆柱形夹杂物组成的复合板。数值模拟表明,薄板中存在弯曲波的低频间隙。随着基质密度的增加,第一间隙的宽度单调减小。有限周期薄板的频率响应是通过有限元方法模拟的,该方法在带隙的频率范围内提供了超过20dB的衰减。该发现对于声子晶体的应用将是重要的。

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