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Optimization of Process and Solution Parameters in Electrospinning Polyethylene Oxide

机译:电纺聚环氧乙烷工艺及溶液参数的优化

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摘要

This paper reports the optimization of electrospinning process and solution parameters using factorial design approach to obtain uniform polyethylene oxide (PEO) nanofibers. The parameters studied were distance between nozzle and collector screen, applied voltage and polyallylamine hydrochloride (PAH) concentration in the spinning solution and its influence on nanofiber diameter. The selected parameters were varied at three levels using Box and Behnken factorial design. The interaction effect between concentration of PAH and the distance played the most significant role, followed by the interaction between distance and applied voltage, and last by the applied voltage alone in obtaining uniform nanofibers. This study shows that in a multiple variable process like electrospinning, the interaction between the different parameters played a significant role, rather than one particular parameter in obtaining uniform nanofibers. It opens up new possibilities in process optimization with a precise control over fiber diameter from the selected parameters.
机译:本文报告了使用析因设计方法优化静电纺丝工艺和溶液参数以获得均匀的聚环氧乙烷(PEO)纳米纤维的方法。研究的参数是喷嘴与收集器筛之间的距离,施加电压和纺丝溶液中的聚烯丙胺盐酸盐(PAH)浓度及其对纳米纤维直径的影响。使用Box和Behnken因子设计在三个级别上更改选定的参数。 PAH浓度与距离之间的相互作用效应起着最重要的作用,其次是距离与施加电压之间的相互作用,最后仅靠施加电压来获得均匀的纳米纤维。这项研究表明,在诸如静电纺丝这样的多变量过程中,不同参数之间的相互作用起着重要作用,而不是获得均匀纳米纤维的一个特定参数。通过选择参数精确控制纤维直径,为工艺优化开辟了新的可能性。

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