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Flexible 3D Printed Conductive Metamaterial Units for Electromagnetic Applications in Microwaves

机译:用于微波炉电磁应用的柔性3D印刷通式超材料

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摘要

In this work we present a method for fabricating three dimensional, ultralight and flexible millimeter metamaterial units using a commercial household 3D printer. The method is low-cost, fast, eco-friendly and accessible. In particular, we use the Fused Deposition Modeling 3D printing technique and we fabricate flexible conductive Spilt Ring Resonators (SRRs) in a free-standing form. We characterized the samples experimentally through measurements of their spectral transmission, using standard rectangular microwave waveguides. Our findings show that the resonators produce well defined resonant electromagnetic features that depend on the structural details and the infiltrating dielectric materials, indicating that the thin, flexible and light 3D printed structures may be used as electromagnetic microwave components and electromagnetic fabrics for coating a variety of devices and infrastructure units, while adapting to different shapes and sizes.
机译:在这项工作中,我们介绍了一种使用商业家庭3D打印机制造三维,超广强和柔性毫米超材料单元的方法。该方法是低成本,快速,环保和可访问的。特别地,我们使用融合沉积建模3D打印技术,并以独立形式制造柔性导电溢出的环谐振器(SRRS)。我们通过使用标准矩形微波波导通过测量来实验地表征样品。我们的研究结果表明,谐振器产生良好定义的谐振电磁特征,这取决于结构细节和渗透介电材料,表明薄,柔性和光线3D印刷结构可用作电磁微波部件和用于涂覆各种的电磁织物设备和基础设施单元,同时适应不同的形状和大小。

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