利用扭转局部谐振器在超材料梁中形成带隙抑制振动

Yu Jian, Guobiao Hu, Lihua Tang, K. Aw
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引用次数: 1

摘要

局部谐振超材料在振动抑制方面的应用引起了广泛的研究兴趣,这是工程领域的一个基本问题,也是一个巨大的挑战。横波在梁中的传播是通过剪力和弯矩的传递。现有文献中大多数超材料设计利用平移局部谐振器诱导反作用力来阻止剪切力的传递,从而阻止波的传播。研究了一种带有扭转局部谐振腔的超材料梁。扭转谐振器产生的反作用力可以中和梁中的弯矩,从而阻止波的传播。扭转谐振子的存在导致了力矩不连续的条件,这是用欧拉梁理论不能直接考虑的。基于Timoshenko光束理论,通过基于无限周期局部谐振器结构的模态分析,发展了带结构分析。数值结果表明,局部谐振频率对应于带隙的上界。无限长梁和有限长梁也用有限元法进行了建模。通过计算透光率来验证波段结构分析。
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Band Gap Formation in Metamaterial Beam With Torsional Local Resonators for Vibration Suppression
Locally resonant metamaterials have attracted lots of research interests for the application of vibration suppression which is a fundamental problem but remains a big challenge in the engineering field. The transverse wave propagation in a beam is through the transmission of the shear force and bending moment. Most designs of metamaterials in the existing literature exploit translational local resonators to induce reaction force to prevent the transmission of the shear force, hence the wave propagation. This paper studies a metamaterial beam attached with torsional local resonators. The reaction moments generated by the torsional resonators are expected to neutralize the bending moment in the beam, thus preventing the wave propagation. The existence of torsional resonators leads to the moment discontinuity conditions which cannot be directly taken into account using the Euler beam theory. Based on the Timoshenko beam theory, the band structure analysis is developed through a modal analysis based on the infinite periodic local resonator structure. The numerical results reveal that the locally resonant frequency corresponds to the upper bound of the band gap. Both infinitely long and finitely long beams are also modeled using finite element method. The transmittance is calculated to verify the band structure analysis.
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