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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Properties of 50–110-GHz Waveguide Components Fabricated by Metal Additive Manufacturing
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Properties of 50–110-GHz Waveguide Components Fabricated by Metal Additive Manufacturing

机译:金属增材制造制造的50–110 GHz波导组件的特性

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This paper presents several V-band (50-75 GHz) WR-15 and W-band (75-110 GHz) WR-10 waveguide components fabricated using both direct metal laser sintering in aluminum, nickel-chromium, maraging steel (MS), and copper alloys and stereolithography in copper-coated plastic. Printing resolution is analyzed with respect to feature creation. The RF performance and surface roughness are measured, and the loss due to surface roughness quantified. The measured loss for WR-10 at 92.5-GHz ranges from 5.5 dB/m for the copper-plated plastic waveguides to 36.9 dB/m for the nickel alloy and for WR-15 at 62.5-GHz ranges from 11.0 dB/m for the aluminum alloy to 14.4 dB/m for the MS alloy. From a loss budget study, it is found that standard models do not accurately predict loss due to surface roughness for rough surfaces where the height variation is much larger than skin depth δ. It is also found that for internally complex printing, the MS alloy versions maintain the closest structure to designed components and expected RF performance. This paper presents the current state-of-the-art in available additive-manufactured waveguide components at V- and W-bands.
机译:本文介绍了在铝,镍铬和马氏体时效钢(MS)中使用直接金属激光烧结制造的几种V波段(50-75 GHz)WR-15和W波段(75-110 GHz)WR-10波导组件,以及镀铜塑料中的铜合金和立体光刻。就特征创建来分析打印分辨率。测量RF性能和表面粗糙度,并量化由于表面粗糙度引起的损耗。对于WR-10,在92.5-GHz处测得的损耗范围为:镀铜塑料波导的5.5 dB / m至镍合金的36.9 dB / m;对于WR-15,在62.5-GHz处,测得的损耗范围为11.0 dB / m。铝合金至MS合金为14.4 dB / m。从损耗预算研究中发现,对于高度变化远大于集肤深度δ的粗糙表面,标准模型无法准确预测由于表面粗糙度导致的损耗。我们还发现,对于内部复杂的印刷,MS合金版本保持与设计组件和预期的RF性能最接近的结构。本文介绍了在V波段和W波段可用的增材制造波导组件的最新技术。

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