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Structural Luneburg lens for broadband cloaking and wave guiding

机译:用于宽带固化和波浪引导的结构持守斯宾镜头

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In this paper, we explore the concept of structural Luneburg lens (SLL) as a design framework for performing dynamic structural tailoring to obtain a structural wave cloak and a structural waveguide. The SLL is a graded refractive index lens, which is realized by using a variable thickness structure defined in a thin plate. Due to the thickness variation of the plate, the refractive index decreases radially from the centre to the outer surface of the lens. By taking advantage of the unique capabilities of SLL for flexural wave focusing and collimation, we develop a structural wave cloak and waveguide based on SLLs. The SLL design enables the integration of functional devices into thin-walled structures while preserving the structural characteristics. Analytical, numerical, and experimental studies are carried out to characterize the performance of the SLL cloak and the SLL waveguide. The results demonstrate that these SLL devices exhibit excellent performance for structural wave cloaking and waveguiding over a broadband operating frequency range.
机译:在本文中,我们探讨了结构函数仪表透镜(SLL)的概念,作为用于执行动态结构剪裁的设计框架,以获得结构波裂纹和结构波导。 SLL是梯度折射率透镜,其通过使用在薄板中限定的可变厚度结构来实现。由于板的厚度变化,折射率从中心到透镜的外表面径向减小。通过利用SLL用于弯曲波形聚焦和准直的独特功能,我们基于SLL开发结构波裂纹和波导。 SLL设计能够将功能装置集成到薄壁结构中,同时保持结构特性。进行分析,数值和实验研究,以表征SLL Cloak和SLL波导的性能。结果表明,这些SLL器件具有优异的结构波形具有优异的性能,并在宽带工作频率范围内波动。

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