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Gaseous flow focusing for spinning micro and nanofibers

机译:用于纺丝微型和纳米纤维的气体流量

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摘要

We apply the gaseous flow focusing principle to produce fibers of polyvinylpyrrolidone down to the nanometer scale. The polymer solution is injected in front of a glass converging micronozzle through which a high-speed air stream flows. The air stream sucks and drags the liquid forming a meniscus whose tip emits a thin jet. The jet flies while whipping until it solidifies due to the solvent evaporation. The resulting fiber is deposited on a rotating drum collector. Gaseous Flow Focusing Spinning does not require any additional source of energy. It proves to be stable and robust, and produces fibers over hours with hardly any interruptions for wide ranges of gas pressures and liquid flow rates. Fibers with diameters of the order of 100 nm are produced for sufficiently low polymer concentrations. Their sections are circular and uniform in diameter. The standard deviation of the diameter distribution ranges from around 20%-40% of the corresponding mean value.
机译:我们应用气体流量聚焦原理,将聚乙烯吡咯烷酮的纤维降至纳米级。 将聚合物溶液注入玻璃会聚微嘴前面,通过该微嘴通过该微嘴流入该玻璃会聚微流。 空气流吸入并拖动形成尖端发射薄射流的液体的液体。 跳动在搅打之前,直到它由于溶剂蒸发而凝固。 将得到的纤维沉积在旋转鼓收集器上。 气流聚焦纺纱不需要任何额外的能量来源。 它证明是稳定和稳健的,并在几小时内产生纤维,几乎没有任何中断气体压力和液体流速的范围。 为充分低的聚合物浓度产生直径为100nm的直径的纤维。 它们的截面是圆形和均匀的直径。 直径分布的标准偏差范围为相应平均值的约20%-40%。

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