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Surface free energy analysis of electrospun fibers based on Rayleigh-Plateau/Weber instabilities

机译:基于瑞利高原/韦伯稳定性的电纺纤维表面自由能分析

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摘要

Electrospinning is an increasingly common technique used to produce fibers with a range of diameters. These electrospun fibers are used extensively in applications that exploit the material s high surface area to volume ratio, thus requiring detailed knowledge of the surface properties of the fibers. The surface free energy of individual free standing electrospun styrene-butadiene rubber (SBR) fibers was determined here from the time-dependent break-up of long fibers driven initially by Rayleigh-Plateau/Weber instabilities. Individual free standing electrospun rubber fibers were observed to change from a cylindrical Rbrous geometry to semi-spherical droplets during a time period of several days when above the glass transition temperature of the polymer. A wave-like transition from fiber to droplet was attributed to a surface tension driven break-up process occurring over a time strongly inSuenced by the rubber's viscosity. The surface free energy for an electrospun rubber fiber was found using a Weber approach for the free standing fibers and Diez et al theory for dynamic Suid instability of Suid ridges. Both methods lead to similar values of fiber surface free energy and were confirmed from bulk measurements exploiting Owens-Wend theory. The approach presented here is powerful as the surface free energy, indicative of the physical and chemical behavior of the fiber surface, can be determined for any fiber diameter provided thegeometric break-up of the fiber is observed.
机译:静电纺丝是一种越来越常见的技术,用于生产具有一定直径的纤维。这些电纺纤维在利用材料S高表面积到体积比的应用中广泛使用,从而需要详细了解纤维的表面性质。这里从最初由瑞利高原/韦伯稳定性推动的长纤维的长纤维的时间依赖性分解来确定单独的自由静电纺苯乙烯 - 丁二烯橡胶(SBR)纤维的表面自由能。观察单个自由静态电纺橡胶纤维在高于聚合物的玻璃化转变温度的时间期间从圆柱形颠簸几何形状到半球形液滴。从纤维到液滴的波状过渡归因于表面张力驱动的分解过程,其发生受橡胶粘度强烈地破坏的时间。利用韦伯方法,找到了用于自由常规纤维和Diez等人的动态脊柱的动态缺乏的理论,发现了电纺橡胶纤维的表面自由能。两种方法都导致纤维表面自由能值,并从散装测量中确认利用欧文斯 - Wend理论。这里呈现的方法是强大的,作为表面自由能,指示纤维表面的物理和化学行为,可以针对任何纤维直径确定,条件观察到纤维的GeeGe0.Gape测定。

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