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Lamb wave band gaps in one-dimensional radial phononic crystal plates with periodic double-sided corrugations

机译:具有周期性双面波纹的一维径向声子晶体板中的兰姆波带隙

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摘要

In this paper, we present the theoretical investigation of Lamb wave propagation in one-dimensional radial phononic crystal (RPC) plates with periodic double-sided corrugations. The dispersion relations, the power transmission spectra, and the displacement fields of the eigenmodes are studied by using the finite element method based on two-dimensional axial symmetry models in cylindrical coordinates. Numerical results show that the proposed RPC plates with periodic double-sided corrugations can yield several band gaps with a variable bandwidth for Lamb waves. The formation mechanism of band gaps in the double-sided RPC plates is attributed to the coupling between the Lamb modes and the in-phase and out-phases resonant eigenmodes of the double-sided corrugations. We investigate the evolution of band gaps in the double-sided RPC plates with the corrugation heights on both sides arranged from an asymmetrical distribution to a symmetrical distribution gradually. Significantly, with the introduction of symmetric double-sided corrugations, the antisymmetric Lamb mode is suppressed by the in-phase resonant eigenmodes of the double-sided corrugations, resulting in the disappearance of the lowest band gap. Furthermore, the effects of the geometrical parameters on the band gaps are further explored numerically. (C) 2015 ELsevier B.V. All rights reserved.
机译:在本文中,我们提出了Lamb波在具有周期性双面波纹的一维径向声子晶体(RPC)板中传播的理论研究。基于圆柱坐标系中二维轴向对称模型的有限元方法,研究了本征模的色散关系,功率传输谱和位移场。数值结果表明,提出的具有周期性双面波纹的RPC板可以产生多个带隙,这些带隙对于Lamb波具有可变的带宽。双面RPC板中带隙的形成机理归因于Lamb模式与双面波纹的同相和异相共振本征模式之间的耦合。我们研究了双面RPC板中带隙的演变,其两侧的波纹高度逐渐从不对称分布到对称分布。重要的是,随着对称双面波纹的引入,双面波纹的同相共振本征模抑制了反对称兰姆模,从而导致了最低带隙的消失。此外,在数值上进一步探讨了几何参数对带隙的影响。 (C)2015 ELsevier B.V.保留所有权利。

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