Mathematical Institute, University of Oxford, Andrew Wiles Building, Radcliffe Observatory Quarter, Woodstock Road, Oxford OX2 6GG, United Kingdom.
Carbohydr Polym. 2016 Jan 1;135:187-90. doi: 10.1016/j.carbpol.2015.08.033. Epub 2015 Aug 20.
In the present paper, we obtain the exact solution to the jet flow of a polymer arising in the electrospun nanofiber elaboration process. This allows us to improve on the approximate solutions of Colantoni and Boubaker (2014) and He, Kong, Chen, Hu, and Chen (2014). Our corrected and far simpler solution is more useful for extracting the salient physics inherent in the electrospun nanofiber elaboration process. We then consider the more robust formulation of the problem, in which the velocity of the jet and the radius of the jet depend strongly on one another, obtaining the solution in this case as well. All of the results obtained are rather simple, and give us closed-form exact solutions (rather than complicated approximations), and hence these results both maintain accuracy and have the possibility of being useful for future studies into the physics of such mechanical processes. The results also agree nicely with experimental and numerical results present in the literature.
在本文中,我们获得了在电纺纳米纤维制备过程中出现的聚合物射流的精确解。这使得我们能够改进 Colantoni 和 Boubaker(2014 年)以及 He、Kong、Chen、Hu 和 Chen(2014 年)的近似解。我们修正后的、简单得多的解对于提取电纺纳米纤维制备过程中固有的重要物理特性更为有用。然后,我们考虑了该问题更稳健的表述形式,其中射流的速度和射流的半径强烈地相互依赖,在这种情况下也得到了解决方案。所得到的所有结果都相当简单,并给出了封闭形式的精确解(而不是复杂的近似解),因此这些结果既保持了准确性,又有可能对未来对这种机械过程物理的研究有用。结果也与文献中存在的实验和数值结果很好地吻合。