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A vibration absorber based on two-dimensional acoustic black holes?

机译:基于二维声学黑洞的振动吸收器?

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As a passive damping technique for vibration and noise mitigation, acoustic black hole (ABH) structures have been drawing an increasing attention because of their easy-to realize and broadband wave focusing and energy dissipation characteristics. Structures with embedded ABHs, however, inevitably compromise the overall structural stiffness and strength, which hampers their use as critical structural components. As an alternative, this paper proposes a new type of device, i.e. a two-dimensional circular ABH-based dynamic vibration absorber (2D ABH-DVA), as an auxiliary component to be added to an existing structure for vibration suppressions. Using a plate as benchmark structure, finite element (FE) simulation results show a systematic reduction of its resonant peaks over a broad frequency range upon the deployment of the ABH-DVA. Analyses uncover two underlying mechanisms which dominate the physical process: dynamic interaction with the host structure and damping enhancement as a result of ABH-specific energy trapping. This is warranted by an effective dynamic coupling between the primary structure and the addon ABH-DVA, which can be quantified by a mode-specific and location-dependent coupling coefficient defined in the paper. It is further demonstrated that, despite the rich modal contents of the ABH-DVA, strong coupling with the primary structure only takes place through a few DVA modes. Analyses also lead to a simple linear relationship relating the overall system damping with the properties of the damping material over the ABH-DVA. Finally, the broadband vibration suppression ability of the proposed 2D ABH-DVA is verified through experiments. The study demonstrates the unique coupling features between the DVA and the host structure, which provides design guidelines for unsymmetrical 2D or other ABH-DVA designs in the future.
机译:声黑洞(ABH)结构作为一种被动减振降噪技术,由于其易于实现、宽频带的波聚焦和能量耗散特性,越来越受到人们的关注。然而,带有嵌入式ABH的结构不可避免地会损害整体结构刚度和强度,这阻碍了其作为关键结构部件的使用。作为替代方案,本文提出了一种新型装置,即基于二维圆形ABH的动态减振器(2D ABH-DVA),作为辅助部件添加到现有结构中以抑制振动。采用平板作为基准结构,有限元(FE)模拟结果表明,在部署ABH-DVA后,其共振峰值在较宽的频率范围内得到了系统的降低。分析揭示了主导物理过程的两种潜在机制:与主体结构的动态相互作用和ABH比能陷阱导致的阻尼增强。这是由主结构和附加ABH-DVA之间的有效动态耦合所保证的,该动态耦合可以通过本文中定义的特定于模式和位置的耦合系数来量化。进一步证明,尽管ABH-DVA具有丰富的模态内容,但与主结构的强耦合仅通过少数DVA模态发生。分析还得出了一个简单的线性关系,将整个系统的阻尼与ABH-DVA上阻尼材料的性能联系起来。最后,通过实验验证了二维ABH-DVA的宽带振动抑制能力。该研究展示了DVA和主体结构之间独特的耦合特性,为未来非对称2D或其他ABH-DVA设计提供了设计指南。

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