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Gel-spun polyethylene fibres. Part 2. Influence of polymer concentration and molecular weight distribution on morphology and properties

机译:凝胶纺聚乙烯纤维。第2部分。聚合物浓度和分子量分布对形态和性能的影响

摘要

In addition to spinning temperature, spinline stretching and spinning speed, the properties of gel-spun polyethylene fibres hot-drawn to the maximum draw ratio also depend on the polymer concentration, molecular weight and molecular weight distribution. Reducing the polymer concentration reduces the number of entanglements, and fibres with better properties are obtained. However, a minimum number of entanglements is necessary to ensure sufficient coherence of the entanglement network and avoid premature breakage of the spinline. Therefore, an optimal concentration exists which is shown to shift to a lower value for polyethylene with a smaller molecular weight distribution. Fibres with a tensile strength exceeding 6 GPa and a modulus of about 160 GPa can be prepared as long as spinline stretching is avoided. A smaller molecular weight distribution enhances the deteriorating effect of spinline stretching. The difference in morphologies for as-spun fibres prepared from different gel compositions and under different spinning conditions also strongly affects the cold-drawing behaviour of the extracted as-spun fibres.
机译:除了纺丝温度,纺丝线拉伸和纺丝速度外,热拉伸至最大拉伸比的凝胶纺制聚乙烯纤维的性能还取决于聚合物浓度,分子量和分子量分布。降低聚合物浓度减少了缠结的数量,并且获得了具有更好性能的纤维。但是,最少数量的纠缠是必需的,以确保纠缠网络具有足够的连贯性,并避免旋转线过早损坏。因此,存在最佳浓度,对于分子量分布较小的聚乙烯,该最佳浓度已显示移至较低值。只要避免纺丝线拉伸,就可以制备拉伸强度超过6GPa且模量为约160GPa的纤维。较小的分子量分布增强了纺丝线拉伸的劣化作用。由不同的凝胶组成和在不同的纺丝条件下制备的初纺纤维的形态学差异也极大地影响了所提取的初纺纤维的冷拉伸行为。

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