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HelixJet: An innovative plasma source for next‐generation additive manufacturing (3D printing)

机译:HelixJet:用于下一代增材制造(3D打印)的创新型等离子源

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摘要

A novel plasma source (HelixJet) for use in additive manufacturing (AM)/3D printing is proposed. The HelixJet is a capacitively coupled radio frequency plasma with a double-helix electrode configuration that generates a surprisingly stable and homogeneous glow plasma at low flow rates of argon and its mixtures at atmospheric pressure. The HelixJet was tested on three polyamide powders usually used to produce parts by laser sintering, a powder-based AM process, to form local deposits. The chemical composition of such plasma-printed samples is compared with thermally produced and laser-sintered samples with respect to differences in morphology that result from the different thermal cycles on several length scales. Plasma prints exhibit unique features attributable to the nonequilibrium chemistry and to the high-speed heat exchange.
机译:提出了一种用于增材制造(AM)/ 3D打印的新型等离子体源(HelixJet)。 HelixJet是具有双螺旋电极配置的电容耦合射频等离子体,可在低气压的氩气及其混合物在大气压下产生令人惊讶的稳定均匀的辉光等离子体。对HelixJet进行了三种聚酰胺粉末的测试,这些粉末通常用于通过激光烧结(基于粉末的增材制造工艺)来生产零件,以形成局部沉积物。将这种等离子打印样品的化学成分与热产生的样品和激光烧结的样品的形态差异进行比较,这些差异是由几种长度范围内不同的热循环导致的。等离子印刷品显示出独特的特征,这归因于非平衡化学和高速热交换。

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