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Effect of Solvent Evaporation on Fiber Morphology in Rotary Jet-Spinning

机译:旋转喷射纺丝过程中溶剂蒸发对纤维形态的影响

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摘要

The bulk production of polymeric nanofibers is important for fabricating high performance, nano-scale materials. Rotary Jet-Spinning (RJS) enables the mass production of nanostructured fibers by centrifugal forces but may result in inconsistent surface morphologies. Because nanofiber performance is dependent on its surface features, we asked which parameters must be optimized during production to control fiber morphology. We developed and tested a mathematical model that describes how the competition between fluid instability and solvent removal in RJS regulates the degree of beading in fibers. Our data suggests that solvent evaporation during the spinning process causes an increase in jet viscosity and that these changes inhibit both bead formation and jet thinning. The RJS was used to vary experimental parameters showing that fiber beading can be reduced by increasing solvent volatility, solution viscosity, and spinning velocity. Collectively, our results demonstrate that nanofiber morphology and diameter can be precisely controlled during RJS manufacturing.
机译:聚合物纳米纤维的批量生产对于制造高性能,纳米级材料很重要。旋转喷射纺丝(RJS)可以通过离心力大规模生产纳米结构纤维,但可能导致不一致的表面形态。由于纳米纤维的性能取决于其表面特征,因此我们询问必须在生产过程中优化哪些参数以控制纤维形态。我们开发并测试了一个数学模型,该模型描述了RJS中流体不稳定性和溶剂去除之间的竞争如何调节纤维中的成珠程度。我们的数据表明,纺丝过程中溶剂的蒸发会导致喷射粘度的增加,并且这些变化会抑制珠粒的形成和喷射稀化。 RJS用于改变实验参数,表明可以通过增加溶剂挥发性,溶液粘度和纺丝速度来减少纤维成珠。总的来说,我们的结果表明,在RJS生产过程中可以精确控制纳米纤维的形态和直径。

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