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Fused deposition modelling for microwave circuits antennas

机译:微波电路和天线的熔融沉积建模

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摘要

Additive Manufacturing, or 3D printing, is moving from the research labs and into both consumer and commercial manufacturing markets. As the systems, processes and materials available are becoming more mature we are seeing them being tested for new application areas such as electronics. In this paper we review how fused deposition modelling (FDM) is being explored for creating microwave circuits and componentry, their RF performance and the materials challenges faced. In recent years such microwave circuits and components have included antennas, lenses, anti-reflective coatings, transmission lines and planar circuits, waveguide terminations, performing at frequencies ranging from low GHz up to tens of GHz. Additive manufacture of such objects allows new, novel and complex structures to be fabricated with lower impact on the environment relative to current manufacturing processes, plus the rapid prototyping of circuits. Additionally it currently offers reasonable RF performance that can be competitive through further advances in manufacturing processes and materials.
机译:增材制造或3D打印正在从研究实验室转移到消费和商业制造市场。随着可用的系统,过程和材料的日趋成熟,我们看到它们正在针对新的应用领域(例如电子产品)进行测试。在本文中,我们回顾了如何探索熔融沉积建模(FDM)来创建微波电路和元件,它们的RF性能以及所面临的材料挑战。近年来,这种微波电路和组件包括天线,透镜,抗反射涂层,传输线和平面电路,波导终端,其工作频率范围从低GHz到数十GHz。这样的物体的增材制造允许制造新的,新颖的和复杂的结构,相对于当前的制造工艺,其对环境的影响更小,而且电路的原型迅速成型。此外,它目前提供合理的RF性能,可以通过制造工艺和材料的进一步发展而具有竞争力。

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