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Investigation of the Influence of Build Orientation on the Surface Roughness of the 3D Metal Printed Horn Antenna

机译:建立方向对3D金属印刷喇叭天线表面粗糙度影响的研究

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This research presents the impact on surface roughness of build orientation in the fabrication of a 3D metal printed X-band horn antenna (8.2-12.4 GHz). Build orientation is investigated by printing the antenna at three different orientations of 45°, 90° and 180°, with respect to the building platform. The results indicate that the build orientation has an impact on the surface roughness, though not affecting its transmission coefficient in the X-band. The horn antennae are fabricated with Maraging Steel (MS1), using the Direct Metal Laser Sintering (DMLS) technique on an EOS M280 system. The variations in the microstructural surface roughness due to the build orientation are measured using a White Light Interferometer (WLI). The investigation proved that there is no significant effect of the orientation on the gain of the antenna while working in the X-band. However, the changes could be significant if working at higher frequencies, where this magnitude of surface roughness is more significant.
机译:本研究介绍了在3D金属印刷X频带喇叭天线的制造中建立方向表面粗糙度的影响(8.2-12.4GHz)。通过相对于建筑平台在45°,90°和180°的三种不同方向上印刷天线来研究建立方向。结果表明,构建方向对表面粗糙度产生影响,但不影响X波段中的传动系数。喇叭天线在EOS M280系统上使用直接金属激光烧结(DMLS)技术,用MARICAGENT钢(MS1)制造。使用白色光干涉仪(WLI)测量引起的构建方向引起的微观结构表面粗糙度的变化。调查证明,在X波段工作时,取向对天线的增益没有显着影响。然而,如果在较高频率下工作,这种变化可能是显着的,其中这种表面粗糙度的大小更为显着。

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