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Continuous Dual-Track Fabrication of Polymer Micro-/Nanofibers Based on Direct Drawing

机译:基于直图的聚合物微/纳米纤维连续双轨制造

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摘要

This manuscript proposes a continuous and straightforward method for fabricating suspended micro- and nanodiameter polymer fibers using an automated single-step drawing system. Termed track spinning, the system is based on a simple manual fiber drawing process that is automated by using two oppositely rotating tracks. Fibers are continuously spun by direct contact of polymer solution coated tracks followed by mechanical drawing as the distance between the tracks increases. The device can draw single or multifilament arrays of micro- and nanofibers from many kinds of polymers and solvent combinations. To demonstrate, fibers were pulled from polymer solutions containing polyvinyl acetate (PVAc) and polyurethane (PU). Fiber morphology was smooth and uniform, and the diameter was sensitive to draw length and polymer solution/melt properties. Polymer nanofibers with diameters as small as 450 nm and length of 255 mm were produced. The track spinning method is able to form fibers from high viscosity solutions and melts that are not compatible with some other nanofiber fabrication methods. Further, the setup is simple and inexpensive to implement and nozzleless and does not require an electric field or high-velocity jets, and the tracks can be widened and patterned/textured to enhance fiber yield and manufacturing precision.
机译:该稿件提出了一种使用自动单步拉制系统制造悬浮的微型和纳米表聚合物纤维的连续和直接的方法。当前的轨道旋转,该系统基于简单的手动光纤拉伸过程,通过使用两个相对旋转轨道自动化。通过直接接触聚合物溶液涂覆的轨道,然后机械拉伸随后是纤维连续旋转,因为轨道之间的距离增加。该装置可以从多种聚合物和溶剂组合中汲取单颗粒和纳米纤维的单丝和纳米纤维阵列。为了证明,从含有聚乙酸乙烯酯(PVAC)和聚氨酯(PU)的聚合物溶液中拉出纤维。纤维形态光滑均匀,直径对拉伸长度和聚合物溶液/熔体特性敏感。制备直径为450nm和长度为255mm的聚合物纳米纤维。轨道纺丝方法能够从高粘度溶液中形成纤维,熔融与其他纳米纤维制造方法不相容。此外,实施装置简单且廉价,实现和难以下降,并且不需要电场或高速射流,并且轨道可以加宽和图案化/纹理以增强纤维产量和制造精度。

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