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Three-Dimensional Model for Electrospinning Processesin Controlled Gas Counterflow

机译:静电纺丝工艺的三维模型在受控气体逆流中

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摘要

We study the effects of a controlled gas flow on the dynamics of electrified jets in the electrospinning process. The main idea is to model the air drag effects of the gas flow by using a nonlinear Langevin-like approach. The model is employed to investigate the dynamics of electrified polymer jets at different conditions of air drag force, showing that a controlled gas counterflow can lead to a decrease of the average diameter of electrospun fibers, and potentially to an improvement of the quality of electrospun products. We probe the influence of air drag effects on the bending instabilities of the jet and on its angular fluctuations during the process. The insights provided by this study might prove useful for the design of future electrospinning experiments and polymer nanofiber materials.
机译:我们研究了静电纺丝过程中受控气流对带电射流动力学的影响。主要思想是通过使用类似于非线性Langevin的方法来模拟气流的空气阻力效应。该模型用于研究在不同空气阻力条件下的带电聚合物射流的动力学,表明受控的气体逆流可导致电纺纤维平均直径的减小,并有可能改善电纺产品的质量。我们探讨了空气阻力效应对射流弯曲不稳定性及其过程中角度波动的影响。这项研究提供的见解可能被证明对设计未来的静电纺丝实验和聚合物纳米纤维材料很有用。

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