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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Band gaps and vibration transfer characteristics of one-dimensional triangular arrangement of elastic metamaterials
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Band gaps and vibration transfer characteristics of one-dimensional triangular arrangement of elastic metamaterials

机译:弹性超材料一维三角布置的带隙和振动传递特性

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In this paper, three one-dimensional elastic metamaterials (EMs) coupled with triangular arranged resonators are proposed for broadband elastic vibration suppression and the vibration characteristics of these three models (MODELS II, III, and IV) are compared with the classical EM MODEL I. Firstly, the dispersion curves of the proposed models are studied based on Bloch's theorem. This shows that the starting frequency of the first band gap for MODEL II, MODEL III, and MODEL IV is 8.8%, 54%, and 15% lower than that of MODEL I, respectively. The total band gap width of MODEL IV (alpha= 60 degrees) is 2.89 times that of MODEL II (alpha= 60 degrees), 1.59 times that of MODEL III (alpha= 60 degrees), and 4.3 times that of MODEL I, specifically. The effect of the parameters and configuration of the system on the band gap features is discussed. The spring stiffness ratio has the greatest influence on the band gap behavior, and the optimal parameters of a low-frequency vibration isolation design are obtained accordingly. Finally, the wave propagation characteristics of the EM system composed of finite unit cells show great agreement with the band gap structure of an infinite lattice structure predicted by Bloch's theorem. This research will provide important clues and theoretical guidance for the design of vibration isolators, plates, beams, and other renewed devices.
机译:在本文中,提出了具有三角形布置谐振器的三维弹性超材料(EMS),用于宽带弹性振动抑制和这三种模型的振动特性(模型II,II,II,IV)与经典EM模型I进行比较。首先,基于Bloch定理研究了所提出的模型的色散曲线。这表明模型II,模型III和Model IV的第一带隙的起始频率分别比模型I的8.8%,54%和15%低。 Model IV(Alpha = 60度)的总带隙宽度为II模型II(alpha = 60度),III型(alpha = 60度)的1.59倍,以及模型I的4.3倍,具体地。讨论了系统对带隙特征的参数和配置的影响。弹簧刚度比对带隙行为的影响最大,并且相应地获得了低频振动隔离设计的最佳参数。最后,由有限单元单元组成的EM系统的波传播特性与Bloch定理预测的无限晶格结构的带隙结构非常吻合。该研究将为振动隔离器,板,梁和其他更新器件提供重要的线索和理论指导。

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