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首页> 外文期刊>Iranian polymer journal >Performance evaluation of modified rotating-jet electrospinning method by investigating the effect of collector size on the nanofibers alignment
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Performance evaluation of modified rotating-jet electrospinning method by investigating the effect of collector size on the nanofibers alignment

机译:通过研究收集器尺寸对纳米纤维排列的影响,评估改进的旋转喷射静电纺丝方法的性能

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摘要

Modified rotating-jet electrospinning method (MRJM) is a new electrospinning technique with a novel setup including two metallic concentric hollow cylinders for generating highly aligned fibers. In this report, an experimental study was carried out to evaluate the effectiveness of MRJM for generating highly aligned nanofibers. For this purpose, the effect of voltage in the range of 10-22 kV, inner collector diameter in the range of 20-50 cm, and outer collector diameter in the range of 30-60 cm, on alignment degrees of electrospun fibers were explored and the results for each set of parameters were compared with those obtained for rotating-jet electrospinning method (RJM). The obtained results indicated that the alignment degrees of electrospun fibers in MRJM were significantly higher than those of RJM. The maximum achievable alignment degree in MRJM was around 82 % that was higher than the corresponding maximum value (40 %) of RJM. Although the effect of applied voltage on the degree of alignment in MRJM was observed to be negligible, it was experimentally proved that by manipulating the outer cylinder diameter, the degree of alignment can be increased up to 20 %. To achieve a conceptual understanding of the reason for significant influence of the outer cylinder on the elecrospinning performance, a formula was derived according to the Gauss's law in the last part of this paper that relates the electric field strength inside the region between the inner cylinder and the spinneret to the radii of inner and outer cylinders.
机译:改进的旋转喷射电纺方法(MRJM)是一种新的电纺技术,具有新颖的设置,包括两个金属同心中空圆柱体,用于产生高度对齐的纤维。在本报告中,进行了一项实验研究,以评估MRJM产生高度对齐的纳米纤维的有效性。为此,研究了电压在10-22 kV范围内,内部集电极直径在20-50 cm范围内,在外部集电极直径在30-60 cm范围内对电纺纤维取向度的影响。并将每组参数的结果与通过旋转喷射电纺丝法(RJM)获得的结果进行比较。所得结果表明,MRJM中的电纺纤维的排列度显着高于RJM。 MRJM中可达到的最大对齐度约为82%,高于RJM的相应最大值(40%)。尽管观察到施加的电压对MRJM的对准度的影响可以忽略不计,但已通过实验证明,通过操纵外圆柱直径,可以将对准度提高到20%。为了从概念上理解外筒对电纺性能产生重大影响的原因,根据本文最后一部分的高斯定律,推导了一个公式,该公式将内筒和内筒之间区域内的电场强度联系起来。喷丝头到内,外圆柱的半径。

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