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New Electrospinning Nozzle to Reduce Jet Instability and Its Application to Manufacture of Multi-layered Nanofibers

机译:减少射流不稳定性的新型静电纺丝喷嘴及其在多层纳米纤维制造中的应用

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摘要

A new nozzle system for the efficient production of multi-layered nanofibers through electrospinning is reported. Developed a decade ago, the commonly used coaxial nozzle system consisting of two concentric cylindrical needles has remained unchanged, despite recent advances in multi-layered, multi-functional nanofibers. Here, we demonstrate a core-cut nozzle system, in which the exit pipe of the core nozzle is removed such that the core fluid can form an envelope inside the shell solution. This configuration effectively improves the coaxial electrospinning behavior of two fluids and significantly reduces the jet instability, which was proved by finite element simulation. The proposed electrospinning nozzle system was then used to fabricate bi- and tri-layered carbon nanofibers.
机译:报道了一种通过静电纺丝有效生产多层纳米纤维的新型喷嘴系统。尽管最近在多层,多功能纳米纤维方面取得了进步,但十年前发展起来的,由两个同心圆柱针组成的常用同轴喷嘴系统一直保持不变。在这里,我们演示了一种岩心切割喷嘴系统,在该系统中,岩心喷嘴的出口管被移除,从而岩心流体可以在壳溶液内部形成包膜。这种配置有效地改善了两种流体的同轴电纺行为,并显着降低了射流的不稳定性,这已通过有限元模拟得到了证明。然后,将所提出的静电纺丝喷嘴系统用于制造双层和三层碳纳米纤维。

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