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Morphology Transition in Electrospinning Polymers by a Dual-Capillary System

机译:基于双毛细管系统的静电纺丝聚合物的形貌转变

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摘要

An experimental investigation of the fiber morphology change of fibers prepared by a dual-capillary electrospinning system, operated in the cone-jet mode, was carried out for poly(vinyl acetate) polymers of three molecular weights. The substrate morphology of the electrospun poly(vinyl acetate) could be changed significantly when the polymer's molecular weight, concentration, solvent, and outer liquid flow rate were varied. The onset of bead-to-fiber transition was determined by the critical chain overlap concentration. For solutions with a high concentration, the fiber diameter and surface were significantly affected by the physical properties of the solvents. To produce fibers of small diameter, electrospinning with a higher conductivity solution was desirable. On the other hand, a high-conductivity solution needed to be avoided to keep the fiber uniform in diameter and smooth on the surface. The comparison of electrospun fibers produced by both single-capillary and dual-capillary systems was also addressed.
机译:以三分子量聚醋酸乙烯酯聚合物为研究对象,对锥射流模式下的双毛细管静电纺丝系统制备的纤维纤维形态变化进行了实验研究。当聚合物的分子量、浓度、溶剂和外液流速发生变化时,静电纺丝聚醋酸乙烯酯的基材形貌会发生显著变化。磁珠到纤维转变的开始由临界链重叠浓度决定。对于高浓度溶液,纤维直径和表面受溶剂物理性质的影响显著。为了生产小直径的纤维,需要使用更高电导率溶液的静电纺丝。另一方面,需要避免使用高导电性溶液,以保持纤维直径均匀和表面光滑。还讨论了单毛细管和双毛细管系统产生的静电纺丝纤维的比较。

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