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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Modular elastic metasurfaces with mass oscillators for transmitted flexural wave manipulation
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Modular elastic metasurfaces with mass oscillators for transmitted flexural wave manipulation

机译:具有传输弯曲波操纵的质量振荡器的模块化弹性元件

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摘要

In the present study, a modular mass oscillator elastic metasurface (MMEM) is proposed to manipulate the wavefield of flexural waves by assembling and replacing mass-oscillator-like functional units. Based on the bandgap analysis of phononic crystals, the MMEMs were found to achieve a full 2 pi range of phase shift with relatively high transmission using functional unit arrangements of varying sizes (masses). According to the generalized Snell's law, the modulation of abnormal refraction, lens focusing, and beam self-acceleration can be realized. To broaden the operating frequency domain, we present the idea of a multiple mass oscillator array design, which can control flexural waves at broadband frequencies of 13-41 kHz by adding/removing mass oscillators within a functional unit. This study presents a method to realize tunable metasurfaces and provides an innovative concept for broadening the operating frequency of elastic metasurfaces.
机译:在本研究中,提出了一种模块化质量振子弹性亚表面(MMEM),通过组装和替换类似质量振子的功能单元来操纵弯曲波的波场。基于声子晶体的带隙分析,发现MMEMs使用不同尺寸(质量)的功能单元排列,实现了完整的2π相移范围,具有相对高的传输率。根据广义斯奈尔定律,可以实现对反常折射、透镜聚焦和光束自加速的调制。为了拓宽工作频率域,我们提出了多质量振荡器阵列设计的想法,通过在功能单元内添加/移除质量振荡器,可以在13-41 kHz的宽带频率下控制弯曲波。本研究提出了一种实现可调谐超表面的方法,并为拓宽弹性超表面的工作频率提供了一个创新的概念。

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