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Tunable extremely wide low-frequency band gaps in accordion-like metamaterials

机译:类似手风琴的超材料中可调谐的极宽低频带隙

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To achieve wave control at broad-band ultra-low frequencies, we design 'accordion-like' meta-structures by periodically alternating tensegrity prisms with solid disks. The structures are characterized by extremely wide band gaps, which can be tuned by varying the level of prestress in the constituent elements. They provide valid alternatives to other metamaterials with low-frequency performance, the functionality of which relies on a locally resonant mechanism, by overcoming an inherent limit of narrow operating frequency ranges and demonstrating the resilience to variations in geometric and material parameters.
机译:为了在宽带超低频下实现波控制,我们通过将张紧力棱镜与实心圆盘定期交替设计“手风琴状”元结构。结构的特征是带隙极宽,可以通过改变组成元素中的预应力水平来调整。它们克服了窄工作频率范围的固有限制,并展示了对几何和材料参数变化的适应性,从而为其他具有低频性能的超材料提供了有效的替代方案,其功能依赖于局部共振机制。

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