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Flow‐induced on‐line crystallization of rodlike molecules in fiber spinning

机译:纤维纺丝中棒状分子的流动诱导在线结晶

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AbstractThe micromechanical description of nonisothermal flow‐induced crystallization of a polymeric liquid with rodlike molecules is the main part of the fiber spinning model described here. Solutions of the governing equations show that an increase in winding velocity leads to the appearance of an on‐line flow‐induced crystallization zone in a fiber. This zone manifests itself in accelerated formation (necking) due to the release of heat of crystallization which results in the decrease of viscosity. Liquid crystallinity grows very rapidly in the necking region, which, in turn, leads to the growth of viscosity after some minimal value, which finally arrests fiber deform
机译:摘要非等温流动诱导的棒状分子聚合物液体结晶的微观力学描述是本文描述的纤维纺丝模型的主要部分。控制方程的解表明,缠绕速度的增加会导致光纤中出现在线流动诱导结晶区。由于结晶热的释放,该区域表现为加速形成(颈缩),从而导致粘度降低。液晶度在缩颈区域增长非常迅速,这反过来又导致粘度在某个最小值后增长,最终阻止纤维变形

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