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Stabilization of Electrospun Nanofiber Mats Used for Filters by 3D Printing

机译:通过3D打印稳定用于过滤器的静电纺纳米纤维毡

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摘要

Electrospinning is a well-known technology used to create nanofiber mats from diverse polymers and other materials. Due to their large surface-to-volume ratio, such nanofiber mats are often applied as air or water filters. Especially the latter, however, have to be mechanically highly stable, which is challenging for common nanofiber mats. One of the approaches to overcome this problem is gluing them on top of more rigid objects, integrating them in composites, or reinforcing them using other technologies to avoid damage due to the water pressure. Here, we suggest another solution. While direct 3D printing with the fused deposition modeling (FDM) technique on macroscopic textile fabrics has been under examination by several research groups for years, here we report on direct FDM printing on nanofiber mats for the first time. We show that by choosing the proper height of the printing nozzle above the nanofiber mat, printing is possible for raw polyacrylonitrile (PAN) nanofiber mats, as well as for stabilized and even more brittle carbonized material. Under these conditions, the adhesion between both parts of the composite is high enough to prevent the nanofiber mat from being peeled off the 3D printed polymer. Abrasion tests emphasize the significantly increased mechanical properties, while contact angle examinations reveal a hydrophilicity between the original values of the electrospun and the 3D printed materials.
机译:电纺丝是一种众所周知的技术,用于由多种聚合物和其他材料制成纳米纤维毡。由于它们的大的表面体积比,这种纳米纤维垫经常被用作空气或水过滤器。然而,尤其是后者,必须在机械上高度稳定,这对于普通的纳米纤维垫是有挑战性的。解决此问题的方法之一是将它们粘合在刚性更高的物体上,将它们集成在复合材料中,或使用其他技术加固它们以避免由于水压而损坏。在这里,我们建议另一种解决方案。尽管多年以来研究小组一直在研究在宏观纺织织物上使用熔融沉积建模(FDM)技术进行直接3D打印,但在此我们还是首次报道在纳米纤维垫上进行直接FDM打印。我们显示出,通过选择纳米纤维垫上方适当的印刷喷嘴高度,可以对原始聚丙烯腈(PAN)纳米纤维垫以及稳定且更脆的碳化材料进行印刷。在这些条件下,复合材料两部分之间的粘合力足够高,可以防止纳米纤维垫从3D打印的聚合物上剥离。耐磨性测试强调了机械性能的显着提高,而接触角检查则表明电纺丝和3D打印材料的原始值之间具有亲水性。

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