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Electrospinning of polycarbonates: A study of the morphological features of electrospun fibers as function of the solvent used and processing voltage.

机译:聚碳酸酯的电纺:研究电纺纤维的形态特征与所用溶剂和加工电压的关系。

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Unlike conventional spin methods, electrospinning is capable of yielding fibers with submicron range diameters and high specific surface areas. In this study a Bisphenol-A polycarbonate was electrospun using two solvents: Chloroform and a 1:1 mixture of Tetrahydrofuran (THF) and Dimethylformamide (DMF). The morphological features of the electrospun polycarbonate fibers have been studied as a function of the solvent used and also as a function of the processing voltage. The studies were conducted using the SEM, TEM and Scion image analysis program. The results indicate that the morphological features of the fiber such as fiber diameter, diameter-distribution, internal structure and the Bead density variation with voltage are dependent on the solvent used. Electrospun polycarbonate fibers also exhibit a “Raisin like” puckered structure. However, such a feature is independent of the solvent used, and could enhance the functional efficiency of an electrospun material when used in an area-based application. In addition, studies on crazing of bulk polycarbonate and the surface features of electrospun polycarbonate fibers have been conducted. Results indicate that crazing of bulk polycarbonate results in surface damages and features that are also seen on the surface of electrospun polycarbonates. There has been no effort until now to relate the effect of crazing on a plastic, like bulk polycarbonate, and the surface features of electrospun polycarbonate micro-fibers and to study the possibility of using an engineering plastic like polycarbonate, which offers good mechanical properties at a reduced weight, as an electrospin material.
机译:与传统的纺丝方法不同,电纺丝能够产生具有亚微米范围直径和高比表面积的纤维。在这项研究中,使用两种溶剂对双酚A聚碳酸酯进行了静电纺丝:氯仿以及四氢呋喃(THF)和二甲基甲酰胺(DMF)的1:1混合物。已经研究了电纺聚碳酸酯纤维的形态特征与所用溶剂的关系以及与处理电压的关系。研究是使用SEM,TEM和Scion图像分析程序进行的。结果表明,纤维的形态特征,如纤维直径,直径分布,内部结构以及珠粒密度随电压的变化均取决于所用溶剂。电纺聚碳酸酯纤维还表现出“葡萄干样”的褶皱结构。但是,这种特征不依赖于所使用的溶剂,并且在用于基于区域的应用中时可以提高电纺材料的功能效率。另外,已经进行了对散装聚碳酸酯的开裂和电纺聚碳酸酯纤维的表面特征的研究。结果表明,散装聚碳酸酯的龟裂会导致表面损伤和电纺聚碳酸酯表面也可见的特征。直到现在,我们还没有做出任何努力来将开裂对塑料(例如散装聚碳酸酯)的影响与电纺聚碳酸酯微纤维的表面特征联系起来,并研究使用诸如聚碳酸酯这样的工程塑料的可能性,该工程塑料具有良好的机械性能。减轻重量,作为静电纺丝材料。

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