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首页> 外文期刊>Journal of Applied Polymer Science >Alignment and optimization of nylon 6 nanofibers by electrospinning
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Alignment and optimization of nylon 6 nanofibers by electrospinning

机译:尼龙6纳米纤维的静电纺丝排列和优化

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摘要

Nonwoven electrospun nylon 6 nanofibers produced with formic acid under different concentrations have been examined. The effects of the solution properties, electric field, and spinneret-to-collection distance on the fiber uniformity, morphology, and average diameter have been established. The optimum polymer solution concentration (20 wt %), applied voltage (15 kV), and spinning distance (8 cm) have been found to make uniform nylon 6 fibers. A simple technique that can produce a bundle of aligned electrospun fibers suspended between two grounded disks is described. Alignment and stretching of the fibers are derived by the electrostatic interactions between the positive electrode on the spinneret and the grounded disks. The gap between the disks and the collection time have been varied to systematically study the degree of alignment and the density of the collected nylon 6 fibers. The number of the distributed fibers in the bundle can be controlled by the alteration of the deposition time, the voltage, and the width of the gap. Scanning electron microscopy images have indicated a greater degree of fiber alignment with increasing disk gaps and collection times. The article also provides a comprehensive review of the design of various mechanisms for nanofiber alignment. (c) 2007 Wiley Periodicals, Inc.
机译:已经研究了用甲酸以不同浓度生产的非织造电纺尼龙6纳米纤维。已经确定了溶液性质,电场和喷丝头到收集的距离对纤维均匀性,形态和平均直径的影响。已经发现最佳的聚合物溶液浓度(20wt%),施加的电压(15kV)和纺丝距离(8cm)使均匀的尼龙6纤维。描述了一种简单的技术,该技术可以产生一束对齐的电纺纤维,该纤维悬浮在两个接地的磁盘之间。纤维的排列和拉伸是由喷丝板上的正电极与接地的圆盘之间的静电相互作用产生的。改变盘之间的间隙和收集时间以系统地研究排列的程度和收集的尼龙6纤维的密度。可以通过改变沉积时间,电压和间隙的宽度来控制束中分布的纤维的数量。扫描电子显微镜图像表明,随着磁盘间隙和收集时间的增加,纤维排列的程度更高。本文还提供了纳米纤维对齐的各种机制设计的全面综述。 (c)2007年Wiley Periodicals,Inc.

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