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Improved Performance of 3D Metal Printed Antenna through Gradual Reduction in Surface Roughness

机译:通过逐渐减小表面粗糙度提高3D金属印刷天线的性能

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The research presents the performance evaluation of a 3D metal printed antenna, as the inherent surface roughness is gradually reduced using different surface treatment techniques. In this work, surface treatment is performed on a complex shaped, 3D metal printed Sierpinski gasket antenna, fabricated from Ti-6Al-4V using a Direct Metal Laser Sintering (DMLS) technique on EOSINT M280 system. Following the initial assessment, the surface roughness has been reduced gradually, in stages, using surface treatment techniques such as wet blasting and polishing. To monitor the surface morphological changes on the antenna, a Scanning Electron Microscope (SEM) and White Light Interferometer (WLI) have been used. Finally, both the path loss (S_(21)) and the return loss (S_(11)) are measured, to track the RF performance changes on the 3D metal printed antenna, as a function of reducing surface roughness.
机译:该研究提出了3D金属印刷天线的性能评估,因为使用不同的表面处理技术逐渐减少了固有的表面粗糙度。在这项工作中,表面处理在复杂的3D金属印刷Sierpinski垫片天线上进行,在eosint M280系统上使用直接金属激光烧结(DMLS)技术,由Ti-6Al-4V制成。在初始评估之后,使用诸如湿爆破和抛光的表面处理技术,表面粗糙度逐渐降低。为了监测天线的表面形态变化,已经使用了扫描电子显微镜(SEM)和白色光干涉仪(WLI)。最后,测量路径损耗(S_(21))和返回损耗(S_(11)),以跟踪3D金属印刷天线上的RF性能变化,作为降低表面粗糙度的函数。

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