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The Effects of Electric Field on Jet Behavior and Fiber Properties in Melt Electrospinning

机译:电场对熔融静电纺丝射流行为和纤维性能的影响

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The electric field and temperature are the two important factors that influence the diameter and properties of fiber in the melt electrospinning process. It is commonly known that the polymer jet behavior is governed by the electric field within spinning area. In present work, a comprehensively-designed and properly-conducted analysis was carried out to investigate into the effects of electric field on the jet behaviors, diameters, crystalline structure and mechanical properties of the resultant fibers. An auxiliary electrode was invited to enhance the electric field strength. The high-speed photography was adopted to capture the jet motion, and also, the numerical simulation was used to understand the electric field distribution. By making use of the whipping amplitude and whipping frequency, the characteristics of jet behavior were described. It was found that by applying an auxiliary electrode, the average fiber diameter reduced from 61.01 mu m to 9.06 mu m, and the crystallinity and strength of the fiber was improved with the help of the higher electric filed intensity. In addition, the more uniform electric field would produce finer and more uniform fiber because of the more stable jet motion.
机译:电场和温度是影响熔融静电纺丝过程中纤维直径和性质的两个重要因素。通常已知聚合物喷射行为由纺纱区域内的电场管辖。在目前的工作中,进行了全面设计和正确的分析,以研究电场对所得纤维的射流行为,直径,晶体结构和机械性能的影响。邀请辅助电极增强电场强度。采用高速摄影捕获喷射运动,而且,使用数值模拟来了解电场分布。通过利用鞭打幅度和搅打频率,描述了喷射行为的特性。发现,通过施加辅助电极,借助于较高的电射线强度,平均纤维直径从61.01μmm〜9.06μm降低,并且纤维的结晶度和强度得到改善。另外,由于更稳定的射流运动,更均匀的电场将产生更精细更均匀的纤维。

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