Microwave Characterization of Metal Powder Composites for Powder Property Characterization in Additive Manufacturing (AM)

Joseph Filbert, Aaronb Barvincak, M.T. Al Qaseer, R. Zoughi
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引用次数: 1

Abstract

Common additive manufacturing (AM) methods use metal powder feedstock. The properties of the metal powder such as, particle size distribution (PSD), morphology, and presence of surface oxides or other contaminants, can adversely affect the quality of the final built part. Microwave material characterization techniques potentially offer effective ways by which to evaluate such metal properties. To assess sensitivity of microwave signals to the properties of metal powder used in AM, different types of metal powder were incorporated into resin composite samples, whose dielectric properties were then measured using the completely filled-waveguide technique at both X-band (8.2-12.4 GHz) and Ka-band (26.5-40 GHz). These measurements revealed that microwave signals are sensitive to changes in the metal powder properties. The findings open the door for future investigations by which optimized techniques can be devised to do the same in an in-line manner during the AM process.
用于增材制造(AM)粉末性能表征的金属粉末复合材料微波表征
常见的增材制造(AM)方法使用金属粉末作为原料。金属粉末的性质,如粒度分布(PSD)、形貌和表面氧化物或其他污染物的存在,会对最终制造零件的质量产生不利影响。微波材料表征技术可能提供有效的方法来评估这类金属的性质。为了评估微波信号对金属粉末性能的敏感性,将不同类型的金属粉末掺入树脂复合材料样品中,然后使用完全填充波导技术在x波段(8.2-12.4 GHz)和ka波段(26.5-40 GHz)测量其介电性能。这些测量结果表明,微波信号对金属粉末性质的变化很敏感。这些发现为未来的研究打开了大门,通过优化技术,可以在增材制造过程中以在线方式进行同样的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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