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含周期性短截线平板中水平剪切波传播的频散关系分析研究

Analytical study of dispersion relations for shear horizontal wave propagation in plates with periodic stubs.

作者信息

Xu Yanlong

机构信息

Division of Computer, Electrical and Mathematical Sciences and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

出版信息

Ultrasonics. 2015 Aug;61:114-20. doi: 10.1016/j.ultras.2015.04.004. Epub 2015 Apr 25.

Abstract

The coupled mode theory with coupling of diffraction modes and waveguide modes is usually used on the calculations of transmission and reflection coefficients for electromagnetic waves traveling through periodic sub-wavelength structures. In this paper, I extend this method to derive analytical solutions of high-order dispersion relations for shear horizontal (SH) wave propagation in elastic plates with periodic stubs. In the long wavelength regime, the explicit expression is obtained by this theory and derived specially by employing an effective medium. This indicates that the periodical stubs are equivalent to an effective homogenous layer in the long wavelength. Notably, in the short wavelength regime, high-order diffraction modes in the plate and high-order waveguide modes in the stubs are considered with modes coupling to compute the band structures. Numerical results of the coupled mode theory fit pretty well with the results of the finite element method (FEM). In addition, the band structures' evolution with the height of the stubs and the thickness of the plate shows clearly that the method can predict well the Bragg band gaps, locally resonant band gaps and high-order symmetric and anti-symmetric thickness-twist modes for the periodically structured plates.

摘要

具有衍射模式和波导模式耦合的耦合模理论通常用于计算电磁波在周期性亚波长结构中传播时的透射系数和反射系数。在本文中,我扩展了这种方法,以推导在具有周期性短柱的弹性板中水平剪切(SH)波传播的高阶色散关系的解析解。在长波长区域,通过该理论并特别采用有效介质得到了显式表达式。这表明在长波长下周期性短柱等效于一个有效的均匀层。值得注意的是,在短波长区域,考虑板中的高阶衍射模式和短柱中的高阶波导模式,并通过模式耦合来计算能带结构。耦合模理论的数值结果与有限元方法(FEM)的结果拟合得非常好。此外,能带结构随短柱高度和板厚度的演变清楚地表明,该方法可以很好地预测周期性结构板的布拉格带隙、局部共振带隙以及高阶对称和反对称厚度扭转模式。

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