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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Low-Cost Ku-Band Waveguide Devices Using 3-D Printing and Liquid Metal Filling
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Low-Cost Ku-Band Waveguide Devices Using 3-D Printing and Liquid Metal Filling

机译:使用3D打印和液态金属填充的低成本Ku波段波导设备

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摘要

This paper presents a simple, low-cost, hours-long fabrication method for microwave waveguide components of high RF performance. The technique combines 3-D-printed configurations with liquid metal waveguide structures. As a demonstration, a fused deposition modeling multimaterial 3-D consumer-grade printer and liquid gallium were used. A conductive polylactic acid (PLA) waveguide flange was 3-D printed along, in-one-go, with standard PLA for the rectangular waveguide liquid metal enclosures. Microwave WR62 waveguides, resonators, and filters operating in Ku-band were designed, fabricated, and tested. The RF performance of the fabricated waveguide devices is in agreement with the simulations demonstrating better than 1.29 dB/m attenuation in the waveguide and better than 1000n$Q$n-factor for the resonator and the filter at 13 GHz. The fabricated devices demonstrate a new option of an economical fabrication technology for high RF performance microwave waveguide-based devices that can be delivered in hours-time, anywhere, anytime with minimal equipment deployment and investment.
机译:本文提出了一种简单,低成本,耗时数小时的高射频性能微波波导组件制造方法。该技术将3-D打印配置与液态金属波导结构结合在一起。作为演示,使用了熔融沉积建模多材料3-D消费级打印机和液态镓。导电聚乳酸(PLA)波导法兰与矩形波导液态金属外壳的标准PLA一起3D印刷。设计,制造和测试了在Ku波段运行的微波WR62波导,谐振器和滤波器。所制造的波导装置的RF性能与仿真结果相符,表明在波导中的衰减优于1.29 dB / m,并且优于1000n $ Q $ n谐振器和滤波器在13 GHz时的系数。所制造的设备展示了一种经济高效的制造技术的新选择,可用于基于高性能射频微波波导的设备,该设备可在数小时内随时随地以最少的设备部署和投资交付。

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