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首页> 外文期刊>Journal of Membrane Science >Investigation of corrugation phenomenon in the inner contour of hollow fibers during the non-solvent induced phase-separation process
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Investigation of corrugation phenomenon in the inner contour of hollow fibers during the non-solvent induced phase-separation process

机译:非溶剂诱导相分离过程中中空纤维内轮廓的波纹现象研究

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摘要

In this paper by proposing a novel mechanism, we reveal one of the most controversial issues in the hollow fiber fabrication process regarding the instability leading to the deformed cross-section of fibers fabricated through non-solvent induced phase separation. We have analyzed possible instability mechanisms based on our experimental observations and then postulated that the principal instability occurs in the external coagulation bath where the pressure induced in the nascent fiber outer layer as a result of diffusion/convection, precipitation, densification and shrinkage buckles the rigid precipitated polymer shell in the dope and bore fluid interface. In addition, the effect of some spinning conditions such as air-gap distance, bore fluid composition, take-up speed, external coagulant and dope concentration on the final shape of the fiber cross-section have been investigated. The proposed mechanism is in good qualitative agreement with all our observations.
机译:在本文中,通过提出一种新颖的机制,我们揭示了中空纤维制造过程中最有争议的问题之一,该问题涉及导致通过非溶剂诱导相分离制造的纤维截面变形的不稳定性。我们根据实验观察结果分析了可能的不稳定性机理,然后假设主要的不稳定性发生在外部混凝浴中,该处的新生纤维外层中由于扩散/对流,沉淀,致密化和收缩引起的压力使刚性在涂料和孔的流体界面中沉淀出聚合物外壳。此外,还研究了一些纺丝条件,例如气隙距离,孔液成分,卷取速度,外部凝结剂和浓液浓度对纤维横截面最终形状的影响。所提出的机制与我们的所有观察结果在质量上都吻合。

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