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Additive Manufacturing of Complex Millimeter-Wave Waveguides Structures Using Digital Light Processing

机译:使用数字光处理的增材制造复杂的毫米波波导结构

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Additive manufacturing technology has enabled the manufacturing of complex structures, especially those with intricate internal features. This paper proposes a method for building complex-structured millimeter-wave waveguides using a strategy that combines digital light processing 3-D printing technology, a curved corner design, an off-axis print angle of 45 degrees, and a robust postmetallization process. To demonstrate the capability of this combined-strategy method, a traditional magic tee prototype and an adapted inherently matched magic tee prototype are fabricated for use in the W-band. The measured performance of the fabricated inherently matched magic tee demonstrates return loss better than 13.5 dB, isolation coefficients higher than 15.7 dB, insertion losses smaller than 1.3 dB, and a magnitude imbalance of less than 1.3 dB across 80-105 GHz. The 3-D printed magic tee has a comparable performance to a W-band CNC-machined magic tee but weighs 77.5% less than the metallic one.
机译:增材制造技术可以制造复杂的结构,尤其是具有复杂内部特征的结构。本文提出了一种使用结构复杂的毫米波波导的方法,该策略结合了数字光处理3-D打印技术,弯角设计,45度的偏轴打印角度和可靠的后金属化工艺。为了证明这种组合策略方法的功能,制造了传统的魔术T形原型和经过改编的固有匹配的魔术T形原型,以用于W波段。所制造的固有匹配的魔术T形管的测量性能表明,在80-105 GHz范围内,回波损耗优于13.5 dB,隔离系数高于15.7 dB,插入损耗小于1.3 dB,幅度失衡小于1.3 dB。 3-D打印魔术T恤的性能可与W波段CNC加工的魔术T恤相媲美,但重量却比金属制的魔术T恤少77.5%。

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