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Alignment of electrospun polymer fibers using a concave collector

机译:使用凹面收集器排列静电纺丝聚合物纤维

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摘要

During recent years, electrospinning has become a powerful technique for the cost-effective production of fibrous materials with diameters ranging from a few nanometers up to a few micrometers. In a conventional electrospinning system the produced fibers are collected on a flat grounded collector in a random manner, resulting in isotropic non-woven fibrous mats. Many researchers have been focusing on the modification of the electrospinning collectors for inducing fiber orientation since aligned fibrous mats exhibit unique mechanical, electrical and optical properties rendering them highly attractive in many fields. Unlike other reported collector modification approaches developed for inducing fiber alignment via electrospinning, a very simple concept for producing aligned polymer fibers is presented herein, based on the modification of the electric field profile by replacing the flat metallic collector employed in a typical electrospinning set-up, with a concave one. The electric field profile developed in the case of the flat and the concave collectors was simulated performing a finite elements analysis. Most importantly electrospun meshes were produced and quantification of fiber alignment with a Fourier transform method on different deposition sites of the concave collector showed an up to 70% fiber alignment in the center area. This work creates new prospects towards the design of static collectors employed in electrospinning that could enable the fabrication of highly aligned electrospun fibers.
机译:近年来,静电纺丝已成为一种经济有效的技术,可以经济有效地生产直径范围从几纳米到几微米的纤维材料。在常规的电纺丝系统中,所产生的纤维以无规方式收集在平坦接地的收集器上,从而形成各向同性的非织造纤维垫。由于对齐的纤维毡具有独特的机械,电和光学特性,因此使其在许多领域具有很高的吸引力,因此许多研究人员一直致力于将静电纺丝收集器的改性以引起纤维定向。与开发用于通过静电纺丝诱导纤维排列而开发的其他收集器改性方法不同,本文提出了一种非常简单的概念,用于生产排列的聚合物纤维,其原理是通过替换典型的静电纺丝装置中使用的扁平金属收集器来改变电场分布,凹形的。模拟平面和凹形集电器的电场分布,进行有限元分析。最重要的是,生产了电纺网,并通过傅立叶变换法对凹面收集器不同沉积部位的纤维排列进行了定量,结果表明中心区域的纤维排列高达70%。这项工作为静电纺丝中使用的静电收集器的设计创造了新的前景,该静电收集器可以制造高度排列的静电纺丝纤维。

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