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首页> 外文期刊>Journal of Applied Polymer Science >Air permeability of electrospun polyacrylonitrile nanoweb
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Air permeability of electrospun polyacrylonitrile nanoweb

机译:静电纺聚丙烯腈纳米纤维网的透气性

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摘要

Ultrafine fibers were spun from polyacrylonitrile (PAN) solution in N,N-dimethylformamide using a homemade electrospinning setup. Fibers with diameter ranging from 80 to 340 nm were obtained. Fiber size and fiber size distribution were investigated for various concentration, applied voltage, and tip-to-collector distance using image analysis. The diameters of the electrospun fibers increase when increasing the solution concentration and decrease slightly when increasing the voltage and needle tip-to-collector distance. Porosity and air permeability are vital properties in applications of electrospun nanofibrous structures. In this study, effects of process parameters on the porosity and air permeability of electrospun nanoweb were investigated as well. Results of statistical analysis showed that solution concentration and applied voltage have significant influences on pore diameters. It was concluded that nanofiber diameter played an important role on the diameter of pores formed by the intersections of nanofibers. A more realistic understanding of porosity was obtained and a quantitative relationship between nanoweb parameters and its air permeability was established by regression analysis. Two separate models were constructed for predicting air permeability in relation to process parameters. Optimization of electrospinning process for producing nanoweb with desirable air permeability is well achieved by these models. The models presented in this study are of high importance for their ability to predict the air permeability of PAN nanoweb both by process or structure parameters.
机译:使用自制的电纺丝装置,从聚丙烯腈(PAN)在N,N-二甲基甲酰胺中的溶液纺制超细纤维。获得了直径为80至340nm的纤维。使用图像分析研究了各种尺寸,施加电压和尖端到收集器距离的纤维尺寸和纤维尺寸分布。当增加溶液浓度时,电纺纤维的直径会增加;而当电压和针尖到收集器的距离增加时,电纺纤维的直径会略微减小。在电纺纳米纤维结构的应用中,孔隙率和透气性是至关重要的性能。在这项研究中,还研究了工艺参数对电纺纳米纤维网的孔隙率和透气性的影响。统计分析结果表明,溶液浓度和施加电压对孔径有显着影响。结论是,纳米纤维直径在由纳米纤维相交形成的孔的直径中起重要作用。通过回归分析获得了对孔隙度的更现实的理解,并建立了纳米纤维网参数与其透气率之间的定量关系。构建了两个独立的模型来预测与工艺参数相关的透气率。这些模型很好地实现了电纺丝工艺的优化,以生产具有所需透气性的纳米纤维网。这项研究中提出的模型对于通过工艺或结构参数预测PAN纳米纤维网的透气性具有很高的重要性。

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