Vibration analysis of a composite elastic metamaterial plate based on semi-analytical method

Xingguo Wang, Lan Wang, Y. Xu, Haisheng Shu
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Abstract

Abstract: A semi-analytical vibration analyzing process is presented for a kind of finite composite elastic metamaterial plate by combining the equivalent medium theory and the first-order shear deformation sandwich plate theory, and the natural and steady-state vibration characteristics of such complex composite structure are investigated by means of equivalent analysis. The effectiveness of the semi-analytical analyzing process is demonstrated and some extraordinary vibration behaviors of such composite structure are revealed, such as there is no natural frequency in the bandgap, the modal density consistently increases around the bandgap's starting frequency, and the modes of the appropriate orders before and after the bandgap are consistent at the macroscopic level. The semi-analytical analyzing process and the special vibration behaviors may provide useful reference for relevant investigation and design of composite elastic metamaterial plate structures in the field of vibration control and isolation.
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基于半解析法的复合弹性超材料板振动分析
摘要结合等效介质理论和一阶剪切变形夹层板理论,提出了一类有限复合弹性超材料板的半解析振动分析方法,并采用等效分析方法研究了这种复杂复合材料结构的自然和稳态振动特性。证明了半解析分析过程的有效性,揭示了该复合材料结构的一些特殊振动行为,如带隙内不存在固有频率,模态密度在带隙起始频率附近持续增加,带隙前后适当阶数的模态在宏观上是一致的。半解析分析过程及其特殊的振动特性可为复合弹性超材料板结构在振动控制和隔振领域的相关研究和设计提供有益的参考。
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