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The jetting behavior of viscoelastic Boger fluids during centrifugal spinning

机译:粘弹性Boger流体在离心纺丝过程中的喷射行为

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摘要

We present an experimental visualization study of centrifugal spinning, which is a novel method of producing nanofibers. The investigation was conducted using Newtonian and viscoelastic fluids to study the effect of viscoelasticity, driving force, and the flow rate on the initial thinning behavior, jet contour shapes, and radii. Boger fluids based on Newtonian polybutene and viscoelastic polyisobutylene were utilized as test fluids in the current study. Our results reveal that increasing the viscoelasticity leads to a faster initial thinning of the polymer jet. However, the effect is strongly coupled with the rotation speed, and due to a faster increase in extensional viscosity for highly viscoelastic fluids, the thinning slows down with the increase in the angular velocity. Initial thinning is shown to be faster for the lower flow rates. Viscoelasticity and centrifugal force have a significant influence on the jet contour radii. The maximum radius will decrease for more viscoelastic fluids, and with the increase in angular velocity due to the development of the elastic hoop stress. The comparison of experiments with the discretized element modeling with the FENE-P model confirms the model predictive potential for the thinning behavior. Finally, the centrifugal spinning experiments are compared to electrospinning in order to observe a qualitative similarity. (C) 2015 AIP Publishing LLC.
机译:我们介绍了离心纺丝的实验可视化研究,这是一种生产纳米纤维的新方法。使用牛顿流体和粘弹性流体进行了研究,以研究粘弹性,驱动力和流速对初始稀化行为,射流轮廓形状和半径的影响。在本研究中,使用基于牛顿聚丁烯和粘弹性聚异丁烯的Boger流体作为测试流体。我们的结果表明,增加粘弹性会导致聚合物射流的初始稀化更快。但是,该效果与转速密切相关,并且由于高粘弹性流体的拉伸粘度更快地增加,稀化随着角速度的增加而减慢。对于较低的流速,初始稀疏显示更快。粘弹性和离心力对射流轮廓半径有很大影响。对于更大的粘弹性流体,最大半径将减小,并且由于弹性环向应力的产生,角速度将随最大速度的增加而减小。用FENE-P模型对离散元素建模进行的实验比较证实了该模型对稀疏行为的预测潜力。最后,将离心纺丝实验与静电纺丝进行比较,以观察定性的相似性。 (C)2015 AIP Publishing LLC。

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