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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Low-frequency bandgaps of two-dimensional phononic crystal plate composed of asymmetric double-sided cylinder stubs
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Low-frequency bandgaps of two-dimensional phononic crystal plate composed of asymmetric double-sided cylinder stubs

机译:由非对称双面圆柱头组成的二维声子晶体板的低频带隙

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摘要

In this paper, we theoretically investigate the propagation characteristics of Lamb wave in a two-dimensional (2D) asymmetric phononic crystal (PC) plate composed of cylinder stubs of different radius deposited on both sides of a thin homogeneous plate. The dispersion relations, transmission spectra and displacement fields of the eigenmodes are calculated by using the finite element method (FEM). Two complete bandgaps (BGs) can be found in low-frequency range and the transmission spectra coincide with the band structures. We investigate the evolution of dispersion relations with the decrease of the upper stub radius. The physical mechanism of the upper stub radius effect is also studied with the displacement fields of the unit cell. Numerical results show that the symmetry of the stub radius can remarkably influence the band structures and the asymmetric double-sided plate exhibits a new bandgap (BG) in lower frequency range due to the coupling between the lower stub's resonant mode and the plate's Lamb mode becomes weak and the adjacent bands separate. Moreover, we further investigate the effect of the stub height on the dispersion relations and find that the BGs shift to lower frequency regions with the increase of the stub height. In addition, the BGs' sensitivity to the upper stub radius and the stub height is discussed. The low-frequency BGs in the proposed PC plate can potentially be used to control and insulate vibration in low frequency range.
机译:在本文中,我们从理论上研究了Lamb波在二维(2D)不对称声子晶体(PC)板中的传播特性,该板由沉积在薄均质板两侧的不同半径的圆柱头组成。使用有限元方法(FEM)计算本征模的色散关系,透射光谱和位移场。在低频范围内可以找到两个完整的带隙(BG),并且透射谱与带结构重合。我们研究了随着上桩半径的减小,色散关系的演变。还通过晶胞的位移场研究了上半部半径影响的物理机制。数值结果表明,短截线半径的对称性可以显着影响带结构,并且由于下短截线的共振模式与板的Lamb模式之间的耦合,不对称的双面平板在较低的频率范围内表现出新的带隙(BG)。弱,相邻频段分开。此外,我们进一步研究了存根高度对色散关系的影响,发现随着存根高度的增加,BGs移至低频区域。此外,还讨论了BG对上桩头半径和桩头高度的敏感性。建议的PC板中的低频BG可以潜在地用于控制和隔离低频范围内的振动。

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