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首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Evaluation of Additive Manufacturing Techniques Applied to Ku-Band Multilayer Corporate Waveguide Antennas
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Evaluation of Additive Manufacturing Techniques Applied to Ku-Band Multilayer Corporate Waveguide Antennas

机译:Ku波段多层公司波导天线的增材制造技术评估

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In this letter, additive manufacturing technologies have been evaluated for waveguide antenna array prototyping at Ku band. Direct metal laser sintering (DMLS) and stereolithography have been assessed in terms of manufacturing limitations, electrical performance, accuracy, cost and weight, compared with traditional manufacturing methods. This assessment is performed on a corporate-fed waveguide array antenna for end-user digital broadcast satellite communications at Ku band. The objective is to manufacture this intricate multilayer structure as a single block, in order to prevent contact and leakage issues in the interface between antenna layers. This monolithic implementation is unfeasible with conventional milling in aluminum, renowned in the literature for its reliability in waveguide antenna implementation. A prototype has been machined with such technique as a reference for experimental results. A single block fabrication has been possible by DMLS, presenting a similar performance to the reference prototype. Experimental results, including impedance matching, realized the gain and axial ratio have been performed on the antenna prototypes. A 14.7% effective bandwidth has been obtained for the DMLS antenna.
机译:在这封信中,增材制造技术已针对Ku波段的波导天线阵列原型进行了评估。与传统制造方法相比,直接金属激光烧结(DMLS)和立体光刻技术已在制造限制,电气性能,准确性,成本和重量方面进行了评估。该评估是在公司馈送的波导阵列天线上进行的,用于Ku频段的最终用户数字广播卫星通信。目的是将该复杂的多层结构制造为单个块,以防止天线层之间的界面中的接触和泄漏问题。这种单片实施方式对于常规的铝铣削是不可行的,铝以其在波导天线实施中的可靠性而在文献中广为人知。用这种技术加工了原型,作为实验结果的参考。 DMLS可以实现单个模块的制造,其性能与参考原型相似。包括阻抗匹配在内的实验结果实现了天线原型的增益和轴比。已为DMLS天线获得14.7%的有效带宽。

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