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3D printing and metalization methodology for high dielectric resonator waveguide microwave filters

机译:高介电共振器波导微波滤波器的3D打印和金属化方法

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This paper presents a novel approach to manufacture and metalize a standard waveguide microwave filter, with a high dielectric resonator inserted in it. As a first step, a set of 3D-printed ABS plastic filaments have been measured, to establish their electrical properties and suitability for microwave design. Subsequently, a new commercial silver conductive lacquer has been tested to metalize a standard hollow WR-90 waveguide, printed by Fused Deposition Modeling (FDM) technique. This lacquer furnishes acceptable conductivity and proper shielding of the electromagnetic fields inside the structure, operating among microwave frequencies. In parallel, a special thin pellet, chemically synthesized, has been investigated and fabricated. This small cylindrical rod behaves like a high dielectric resonator, that has been employed to design a highly selective waveguide microwave filter, paving the road to the implementation of a novel class of microwave components and systems.
机译:本文提出了一种制造和金属化标准波导微波滤波器的新颖方法,其中插入了高介电共振器。第一步,已对一组3D打印的ABS塑料丝进行了测量,以确定它们的电性能和对微波设计的适用性。随后,已经测试了一种新型的商用银导电漆,以金属化标准空心WR-90波导,并通过熔融沉积建模(FDM)技术进行了印刷。这种漆提供了可接受的导电性,并在微波频率之间操作的情况下,对结构内部的电磁场提供了适当的屏蔽。同时,已经研究和制造了一种特殊的薄颗粒,它是化学合成的。这种小的圆柱棒的行为就像是高介电共振器,已被用于设计高选择性波导微波滤波器,为新型微波组件和系统的实现铺平了道路。

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