Mathematical analysis for controllable near-field electrospinning

Jie Chen, Zhushuai Shao, Changhai Ru, Zhan Yang
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引用次数: 0

Abstract

Near-field electrospinning (NFES) is a novel method possessing higher controllability than conventional far-field electrospinning (FFES). But due to the lack of directions of theoretical model, precise deposition of nanofibers could only accomplished by experience. In this work, expressions for jet cross-sectional radius and jet velocity in NFES were derived in terms of axial position and initial jet acceleration. Based on nonlinear curve fitting method in MATLAB, an approximation for initial jet acceleration was acquired. With this model, it was able to accurately predict the diameter and velocity of nanofibers in NFES. Additionally, the movement speed of the workbench can be regulated by mathematical model rather than experience. So the model proposed in this paper had important guiding significance to precise deposition of nanofibers.
可控近场静电纺丝的数学分析
近场静电纺丝(NFES)是一种比传统远场静电纺丝(FFES)具有更高可控性的新方法。但由于缺乏理论模型的指导,纳米纤维的精确沉积只能依靠经验来完成。本文推导了NFES中射流截面半径和射流速度的轴向位置和初始射流加速度表达式。基于MATLAB中的非线性曲线拟合方法,得到了初始射流加速度的近似解。利用该模型可以准确地预测纳米纤维在NFES中的直径和速度。此外,工作台的运动速度可以通过数学模型而不是经验来调节。因此本文提出的模型对纳米纤维的精确沉积具有重要的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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