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Fabrication of dual-functional composite yarns with a nanofibrous envelope using high throughput AC needleless and collectorless electrospinning

机译:使用高产量AC无针无集电静电纺丝技术制备具有纳米纤维包膜的双功能复合纱线

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摘要

Nanotechnologies allow the production of yarns containing nanofibres for use in composites, membranes and biomedical materials. Composite yarns with a conventional thread core for mechanical strength and a nanofibrous envelope for functionality, e.g. biological, catalytic, have many advantages. Until now, the production of such yarns has been technologically difficult. Here, we show an approach to composite yarn production whereby a plume of nanofibers generated by high throughput AC needleless and collectorless electrospinning is wound around a classic thread. In the resulting yarn, nanofibres can form up to 80% of its weight. Our yarn production speed was 10 m/min; testing showed this can be increased to 60 m/min. After the yarn was embedded into knitwear, scanning electron microscope images revealed an intact nanofibrous envelope of the composite yarn. Our results indicate that this production method could lead to the widespread production and use of composite nanofibrous yarns on an industrial scale.
机译:纳米技术可以生产用于复合材料,膜和生物医学材料的含有纳米纤维的纱线。具有常规线芯以提高机械强度和纳米纤维包膜以提高功能性的复合纱线,例如生物的,催化的,具有许多优点。迄今为止,生产这种纱线在技术上一直很困难。在这里,我们展示了一种生产复合纱线的方法,其中由高通量交流无针和无集电器的静电纺丝产生的纳米纤维羽流缠绕在经典纱线上。在所得的纱线中,纳米纤维可占其重量的80%。我们的纱线生产速度为10μm/ min;测试表明,该速度可以提高到60μm/ min。将纱线包埋到针织物中后,扫描电子显微镜图像显示出复合纱线的完整纳米纤维包膜。我们的结果表明,这种生产方法可以导致工业规模的复合纳米纤维纱的广泛生产和使用。

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