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Uniform Distribution and Densification of Jets in Needleless Electrospinning Using Annular Tip Nozzle

机译:环形尖端喷嘴在无针电纺中射流的均匀分布和致密化

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摘要

Numerous jets can be generated simultaneously on a nozzle by needleless melt electrospinning technology which has the advantages of solvent-free residues and environmental friendliness; and potential industrial application prospects. In this paper, the linear annular tip nozzle was taken as the research object, and the high-speed image acquisition of the jets generation and distribution process of annular tip nozzle was carried out and compared with that of straight-line tip nozzle. The results showed that the repulsive force between the jets caused a slight adjustment in the position of the jets on the free surface, the force between the jets on the annular closed curve canceled each other and eventually reached the equilibrium state, making the position of the jets stable and the distance between the jets the same, and the distance between the jets was related to the intensity of the induced electric field at the tip of the nozzle. Relevant conclusions can provide scientific and practical guidance for the design of needleless electrospinning nozzles on free surface in order to achieve uniform and efficient preparation of ultrafine fibers.
机译:通过无针熔体静电纺丝技术可以在喷嘴上同时产生大量射流,该技术具有无溶剂残留物和环境友好的优点;和潜在的工业应用前景。本文以线性环形喷嘴为研究对象,对环形喷嘴的射流产生和分布过程进行高速图像采集,并与直线喷嘴进行比较。结果表明,射流之间的排斥力使射流在自由表面上的位置略有调整,环形封闭曲线上的射流之间的力相互抵消,最终达到平衡状态,从而使射流之间的位置一致。射流稳定,并且射流之间的距离相同,并且射流之间的距离与喷嘴尖端处的感应电场强度有关。相关结论可为自由表面无针静电纺丝喷嘴的设计提供科学和实践指导,以实现均匀高效地制备超细纤维。

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