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Development of wire spraying for direct micro-patterning via an atmospheric-pressure UHF inductively coupled microplasma jet

机译:通过大气压超高频感应耦合微等离子体射流进行直接微图案喷涂的喷丝技术的发展

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We developed wire spraying for direct micro-patterning via an atmospheric-pressure inductively coupled microplasma (AP-ICMP)jet of 20-50 mu m in diameter. A 50-100-mu m diameter metal wire inserted in the nozzle was melted or evaporated efficiently at a few tens of watts by inductive heating as well as heat conduction from the microplasma and the resulting atomized droplets were jetted out with plasma-gas flowing. Most of the sprayed grains were oxidized during the processing and a deposit composed of metal oxide grains built up locally on the polymeric substrate. Because of the low heat flux due to small plasma size and low energy supply, this spraying is useful for deposition oil low melting-point polymeric substrates. Additionally, the feasibility of line drawing with micron-width was demonstrated by linear translation of the substrate. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们开发了通过直径为20至50微米的大气压感应耦合微等离子体(AP-ICMP)射流进行直接微图案喷涂的线材喷涂。插入喷嘴中的直径为50-100μm的金属丝通过感应加热以及来自微等离子体的热传导在几十瓦特下有效地熔化或蒸发,并且随着等离子气流的流动将生成的雾化液滴喷出。在加工过程中,大多数喷涂的颗粒都会被氧化,并且由金属氧化物颗粒组成的沉积物会局部沉积在聚合物基材上。由于由于等离子体尺寸小和能量供应低而导致的热通量低,因此这种喷涂可用于沉积油的低熔点聚合物基材。另外,通过基板的线性平移证明了具有微米宽度的画线的可行性。 (c)2005 Elsevier B.V.保留所有权利。

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