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首页> 外文期刊>Fibers and Polymers >Structure and Mechanical Properties of Regenerated Cellulose Fibers Wet-Spun from Ionic Liquid/Cosolvent Systems
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Structure and Mechanical Properties of Regenerated Cellulose Fibers Wet-Spun from Ionic Liquid/Cosolvent Systems

机译:离子液体/共溶剂系统湿纺的再生纤维素纤维的结构和力学性能

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摘要

Cellulose fibers were wet spun from cellulose/ionic liquid (IL)/cosolvent solutions. The cosolvent system was consisting of 1-Ethyl-3-methylimidazolium acetate (EmimAc), dimethylformamide (DMF), dimethyl sulfoxide (DMSO), and water with various composition. Rheological properties of the cellulose/EmimAc with cosolvent solutions showed that dissolution rate can be increased by cosolvent addition, and the complex viscosity can be reduced. The solutions were stable over time at room temperature and could be converted to regenerated fibers with good properties via conventional wet spinning process. The increase in crystallinity of the regenerated cellulose fibers obtained from the EmimAc/cosolvent solution was ascribed to the ability of cosolvent to promote interaction between cellulose chains. The crystallinity of the fibers with only EmimAc as solvent is lower than that of the fibers with cosolvent, it seems that in this case the crystallinity dose reflects the difference in tensile properties. Also, a slight increase in tensile strain, by adding cosolvent to the cellulose/IL system under same wet spinning conditions was observed. The increase in the strain may be due to the crystal chain slip and plasticization effect by the cosolvent dispersed in the fiber, resulting in the increase the mobility of cellulose chain.
机译:纤维素纤维从纤维素/离子液体(IL)/共溶剂溶液中湿纺。共溶剂系统由1-乙基-3-甲基咪唑鎓乙酸钾(eMImac),二甲基甲酰胺(DMF),二甲基亚砜(DMSO)和具有各种组成的水。纤维素/ eMIMAC与富含溶胶溶液的流变性质表明,通过共溶剂添加可以增加溶解速率,并且可以减少复合粘度。在室温下,溶液随时间稳定,可以通过常规湿纺丝方法转化为具有良好性质的再生纤维。从eMIMAC / COSOLVETEN溶液中获得的再生纤维素纤维的结晶纤维的增加归因于求解纤维素链之间的促进纤维素链之间的相互作用的能力。仅具有eMImac作为溶剂的纤维的结晶度低于纤维的纤维,似乎在这种情况下,结晶度剂量反映拉伸性能的差异。此外,观察到通过在相同的湿纺丝条件下向纤维素/ IL系统中加入纤维素/ IL系统来轻微增加拉伸菌株。应变的增加可能是由于晶体链的晶体链滑移和塑化效果通过分散在纤维中,导致增加纤维素链的迁移率。

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