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Needleless electrospinning of uniform nanofibers using spiral coil spinnerets

机译:使用螺旋线圈喷丝头进行均匀纳米纤维的无针电纺

摘要

Polyvinyl alcohol nanofibers were prepared by a needleless electrospinning technique using a rotating spiral wire coil as spinneret. The influences of coil dimension (e.g., coil length, coil diameter, spiral distance, and wire diameter) and operating parameters (e.g., applied voltage and spinning distance) on electrospinning process, nanofiber diameter, and fiber productivity were examined. It was found that the coil dimension had a considerable influence on the nanofiber production rate, but minor effect on the fiber diameter. The fiber production rate increased with the increased coil length or coil diameter, or the reduced spiral distance or wire diameter. Higher applied voltage or shorter collecting distance also improved the fiber production rate but had little influence on the fiber diameter. Compared with the conventional needle electrospinning, the coil electrospinning produced finer fibers with a narrower diameter distribution. A finite element method was used to analyze the electric field on the coil surface and in electrospinning zone. It was revealed that the high electric field intensity was concentrated on the coil surface, and the intensity was highly dependent on the coil dimension, which can be used to explain the electrospinning performances of coils. In addition, PAN nanofibers were prepared using the same needleless electrospinning technique to verify the improvement in productivity.
机译:聚乙烯醇纳米纤维是通过无针电纺丝技术制备的,使用旋转螺旋线圈作为喷丝头。研究了线圈尺寸(例如线圈长度,线圈直径,螺旋距离和线径)和操作参数(例如施加电压和纺丝距离)对电纺丝工艺,纳米纤维直径和纤维生产率的影响。发现盘管尺寸对纳米纤维的生产率有相当大的影响,但是对纤维直径的影响较小。纤维生产率随着线圈长度或线圈直径的增加或螺旋距离或线直径的减小而增加。较高的施加电压或较短的收集距离也提高了纤维的生产率,但对纤维直径几乎没有影响。与常规的针电纺丝相比,线圈电纺丝产生的纤维更细,直径分布更窄。使用有限元方法来分析线圈表面和静电纺丝区域中的电场。结果表明,高电场强度集中在线圈表面,强度与线圈尺寸高度相关,可以用来解释线圈的静电纺丝性能。此外,使用相同的无针电纺技术制备了PAN纳米纤维,以验证生产率的提高。

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