采用导电丝的3D打印天线的电磁特性

M. Pous, M. Azpúrua, M. Quílez, M. Mateu, M. Fernández-Chimeno, Ferran Silva
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引用次数: 1

摘要

这项工作提出了准确定义新型材料(如3D导电丝)的电磁特性的需要。虽然这些建筑技术和材料目前被工业使用,但制造过程的影响仍然没有得到适当的表征。本文采用导电丝制作辐射元件,通过组装不同单极子来改变3D打印结构。对S11参数的测量与电磁仿真相结合,确定了所建天线的不同性能。结果表明,打印参数的定义对3D打印单极子的电导率有很大的影响,从而导致天线性能的显著变化。将不适合传播的单极子的结果修正为可以产生合适电磁场的性能。
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Electromagnetic Characterization of 3D Printed Antennas Employing Conductive Filament
This work presents the need to accurately define EM characterization of novel materials like the 3D conductive filament. Although these construction techniques and materials are currently used by the industry, the influence of the manufacturing process is still not properly characterized. In this paper, different monopoles are assembled modifying the 3D printing structure when a conductive filament is employed to fabricate the radiating element. Measurements of the S11 parameter are combined with electromagnetic simulations to determine the different performances of the built antennas. The results highlight that the definition of the printing parameters has a strong influence on the conductivity of the resulting 3D printed monopoles, producing remarkable variations at the antenna performance. Modifying the results from monopoles not suitable to propagate to performances that can produce proper electromagnetic fields.
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