聚丙烯腈
纺纱
聚合物
溶剂
材料科学
化学工程
放松(心理学)
粘度
纤维
表面张力
高分子
高分子化学
下降(电信)
化学
复合材料
热力学
有机化学
心理学
社会心理学
电信
生物化学
物理
计算机科学
工程类
作者
Mikhail S. Kuzin,Ivan Yu. Skvortsov,Pavel S. Gerasimenko,A. V. Subbotin,A. Ya. Malkin
标识
DOI:10.1016/j.molliq.2023.123516
摘要
We investigated how different solvents' affinity with polyacrylonitrile affects the formation of a jet that leads to stable fiber spinning. The study focused on two concentrations, one near and one above the crossover point where the topological entanglements are formed in the semi-dilute solutions. The role of the physical parameters of the solutions, including solvent-polymer affinity, viscosity, surface tension, and relaxation times, was analyzed. The experiment involved the uniaxial deformation of a solution drop under its weight, observed using a high-speed microscopic camera. The stability of the jet was associated with the relaxation time and solvent-polymer affinity. The continuous fiber spinning is mainly determined by the high enough polymer concentration in the solution, and the solvent nature, or by how the solution state is close to the theta conditions. Bicomponent mixed solvents offer two viable routes to achieve this – evaporating a more volatile component from the mixture to increase the polymer concentration, or modifying the solvent with a combination of solvents of different solvent quality. Both approaches have been experimentally validated, enabling the production of continuous stable fibers in the gel stretching regime. In this case, the jet stretching occurs under conditions Wi > 1. Thereby, the transition to the gel state promotes the necessary conditions for macromolecule orientation during fiber spinning.
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