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[AMIM]Cl为溶剂的纤维素溶液流变性能
引用本文:宋俊,谭晓瑞,程博闻,纪秀杰,藏洪俊,夏郁葱,汤占林.[AMIM]Cl为溶剂的纤维素溶液流变性能[J].纺织学报,2010,31(11):11-15.
作者姓名:宋俊  谭晓瑞  程博闻  纪秀杰  藏洪俊  夏郁葱  汤占林
作者单位:1. 天津工业大学,改性及功能纤维天津市重点实验室,天津,300160
2. 吉林化纤股份有限公司,吉林,吉林,132115
基金项目:天津市自然科学基金资助项目,博士后科学基金面上资助项目 
摘    要: 以离子液体氯化1-烯丙基-3-甲基咪唑(AMIM]Cl)为纤维素溶剂,制备3种不同质量分数的纤维素溶液,测定纤维素溶液在不同条件下的静态及动态流变性能,分析实验数据,计算溶液的黏流活化能 及结构黏度指数 。静态流变结果表明,实验范围内的纤维素溶液均为假塑性流体,表观黏度、剪切应力、结构黏度指数均随温度升高而下降,当温度达到100℃,溶液表观黏度趋于恒定。动态流变结果表明:该体系的损耗模量和储能模量随溶液质量分数的增加而增大,随温度的升高而减小;损耗模量和储能模量的曲线都有1个交点,交点前粘性效应占优,交点后弹性效应占优。

关 键 词:纤维素  离子液体  氯化1-烯丙基-3-甲基咪唑  流变性能  假塑性
收稿时间:2009-11-27;

Rheological behavior of cellulose solution with [ AMIM ] Cl as solvent
SONG Jun,TAN Xiaorui,CHENG Bowen,JI Xiujie,ZANG Hongjun,XIA Yucong,TANG Zhanlin.Rheological behavior of cellulose solution with [ AMIM ] Cl as solvent[J].Journal of Textile Research,2010,31(11):11-15.
Authors:SONG Jun  TAN Xiaorui  CHENG Bowen  JI Xiujie  ZANG Hongjun  XIA Yucong  TANG Zhanlin
Affiliation:1.Tianjin Municipal Key Laboratory of Fiber Modification &; Functional Fiber, Tianjin Polytechnic University 2.Jilin Chemical Fiber Co. Ltd.
Abstract:The ionic liquid of 1-allyl-3-methylimidazolium chloride (AMIM]Cl) was used as solvent to dissolve cellulose, and three kinds of cellulose solutions with different mass concentrations were prepared. Static and dynamic rheological properties of cellulose/ AMIM]Cl solutions were investigated at different test conditions. The experimental data were analyzed, and viscose fluid activation energy and the structural viscosity index of the solutions were calculated. The results of static rheological properties show that cellulose ionic liquid solutions are pseudoplastic liquids in the studied range. Apparent shear viscosity, shear stress and structural viscosity index all decrease with temperature increase, and apparent shear viscosity is tend to be a constant value when temperature is up to 100℃. The results of dynamic rheological properties show that the loss modulus and storage modulus of this system are increased with the increasing of solution concentration, decreased with the increasing of temperature. The curves of loss modulus and storage modulus have a crossing point, before it, viscosity is dominant, and after it, elasticity is dominant.
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