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Investigation on 3-D-Printing Technologies for Millimeter- Wave and Terahertz Applications

机译:毫米波和太赫兹应用的3D打印技术研究

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Three-dimensional-printing technologies have been receiving great attention for a wide variety of applications in recent years for cost effectiveness, eco-friendliness, and process simplicity in complicated structures. This paper describes the challenges and solutions of applying 3-D-printing technologies in fabricating passive millimeter-wave (mmWave) and terahertz (THz) devices. First, we review the state-of-the-art dielectric 3-D-printed passive mmWave and THz devices. Then, we focus on our novel 3-D-printed metallic passive mmWave and THz devices such as horn antennas and waveguides. Next, we analyze the dimensional tolerance and surface roughness of various 3-D-printing technologies in order to provide a guide for choosing an appropriate technology for specific applications. Finally, we summarize the current work and identify the future studies in material powder refinement, surface treatment, optimization of the print process, development of hybrid dielectric and metallic 3-D-printing technology for realizing not only simple mmWave and THz devices but also sophisticated mmWave and THz systems.
机译:近年来,由于复杂结构的成本效益,环保性和工艺简单性,三维打印技术已受到广泛应用的广泛关注。本文介绍了在制造无源毫米波(mmWave)和太赫兹(THz)器件中应用3-D打印技术的挑战和解决方案。首先,我们回顾一下最先进的电介质3D打印无源mmWave和THz器件。然后,我们重点研究新颖的3D打印金属无源mmWave和THz器件,例如喇叭天线和波导。接下来,我们分析各种3D打印技术的尺寸公差和表面粗糙度,以便为选择适合特定应用的技术提供指导。最后,我们总结了当前的工作,并确定了在材料粉末细化,表面处理,打印工艺优化,混合电介质和金属3D打印技术的开发方面的未来研究,这些技术不仅可以实现简单的毫米波和太赫兹设备,而且可以实现复杂的设备毫米波和太赫兹系统。

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