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Low-Cost and Lightweight 3D-Printed Split-Ring Resonator for Chemical Sensing Applications

机译:低成本轻量级3D打印的开口环谐振器用于化学传感应用

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摘要

In this paper, a microwave cavity resonator is presented for chemical sensing applications. The proposed resonator is comprised of a three dimensional (3D) split-ring resonator (SRR) residing in an external cavity and capacitively coupled by a pair of coaxial probes. 3D-printing technology with polylactic acid (PLA) filament is used to build the 3D SRR and cavity. Then, the surfaces of the SRR and the inside walls of cavity are silver-coated. The novelty of our proposed structure is its light weight and inexpensive design, owing to the utilization of low density and low-cost PLA. A Teflon tube is passed through the split-gap of the SRR so that it is parallel to the applied electric field. With an empty tube, the resonance frequency of the structure is measured at 2.56 GHz with an insertion loss of 13.6 dB and quality factor (Q) of 75. A frequency shift of 205 MHz with respect to the empty channel was measured when deionized water (DIW) was injected into the tube. Using volume occupied by the structure, the weight of the proposed microwave resonator is estimated as 22.8 g which is significantly lighter than any metallic structure of comparable size.
机译:在本文中,提出了一种用于化学传感应用的微波腔谐振器。所提出的谐振器包括一个三维(3D)开口环谐振器(SRR),该谐振器位于外腔中,并通过一对同轴探针电容耦合。具有聚乳酸(PLA)灯丝的3D打印技术用于构建3D SRR和腔体。然后,对SRR的表面和空腔的内壁进行镀银处理。由于使用了低密度和低成本的PLA,因此我们提出的结构的新颖之处在于重量轻,设计便宜。铁氟龙管穿过SRR的裂隙,使其平行于施加的电场。对于空管,该结构的共振频率在2.56 GHz时测量,插入损耗为13.6 dB,品质因数(Q)为75。当去离子水(将DIW)注入管中。使用该结构占用的体积,所提出的微波谐振器的重量估计为22.8 g,这比任何具有类似尺寸的金属结构都要轻得多。

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