Resonator positioning for enlarged bandgap in mechanical metastructure with finite resonators

Bawoul Chung, A. Erturk, Jae-Hung Han
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Abstract

The positioning of resonators of locally resonant mechanical metastructure with finite resonators is presented to increase the bandgap. Based on the modal analysis solution of mechanical metastructure with finite resonators, the bandgap change according to aperiodic positioning of finite resonators under the fixed mass ratio of main structure to resonators is observed. By utilizing the responses of the main structure with single resonator having various positions, resonator positions for effective vibration attenuation are selected. Mountain frequencies overlapping between resonators is considered from the main structure responses with single resonator, positions for the enlarged bandgap width are obtained. By increasing the number of resonators and positions, mass distribution effect is added in bandgap formation according to resonators’ position of resonators. Using these results, effective resonator positions and mass distribution for each mode of mechanical metastructure with finite resonators under limited mass ratio of main structure to resonators are proposed.
有限谐振器机械元结构中放大带隙的谐振器定位
提出了局部共振机械元结构有限谐振腔的定位方法,以增大带隙。基于有限谐振子力学元结构的模态分析解,观察了在主结构与谐振子质量比固定的情况下,有限谐振子的非周期定位对带隙的影响。利用单腔多位置主结构的响应,选择有效减振的谐振腔位置。从单谐振腔的主结构响应出发,考虑谐振腔间的山频重叠,得到放大带隙宽度的位置。通过增加谐振腔的数量和位置,根据谐振腔的位置,在带隙形成中加入质量分布效应。利用这些结果,提出了在主结构与谐振子质量比有限的情况下,具有有限谐振子的机械元结构各模态的有效谐振子位置和质量分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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