首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Lamb wave band structure in phononic crystal composed of multiple square stubs symmetric or anti-symmetric deposited on a homogeneous plate
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Lamb wave band structure in phononic crystal composed of multiple square stubs symmetric or anti-symmetric deposited on a homogeneous plate

机译:均质板上沉积有对称或反对称的多个方桩组成的声子晶体中的兰姆波段结构

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This paper theoretically investigates the propagation of Lamb waves in a two-dimensional (2D) phononic crystal (PC) structure composed of multiple square stubs symmetric or anti-symmetric deposited on a thin homogeneous plate. The dispersion relations, the power transmission spectra and the displacement fields of the eigenmodes are studied by using the finite-element method (FEM). We investigate the effect of the distance between adjacent square stubs on the band gaps (BGs). The results show that the distance between adjacent square stubs can remarkably change the location and the width of the BGs. Meanwhile, we conducted a numerically study on the different results between the anti-symmetric and symmetric distribution of the scatterers. The band structure of the anti-symmetric structure PC is significantly different from the symmetric structure. In general, the distribution of the square stubs has an influence on the band structures. We further identify the physical mechanism of the distinction in the formation of the BG between the anti-symmetric and the symmetric model through the displacement fields of the eigenmodes. In addition, we find that the variation of the PC BGs in anti-symmetric and symmetric structure are sensitive to the distance between adjacent square stubs, which could be indispensable to practical applications such as BG tuning.
机译:本文从理论上研究了Lamb波在二维(2D)声子晶体(PC)结构中的传播,该结构由对称或反对称的多个方形短管组成,该方形短管对称或反对称沉积在薄的均质板上。利用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。我们调查了相邻的方形桩之间的距离对带隙(BGs)的影响。结果表明,相邻方形桩之间的距离可以显着改变BG的位置和宽度。同时,我们对散射体的反对称分布和对称分布之间的不同结果进行了数值研究。反对称结构PC的能带结构与对称结构明显不同。通常,方形短截线的分布会影响能带结构。通过特征模态的位移场,我们进一步确定了反对称模型和对称模型之间BG形成区别的物理机制。此外,我们发现PC BG在反对称和对称结构中的变化对相邻方形桩之间的距离很敏感,这对于BG调整之类的实际应用可能是必不可少的。

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