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High-strength regenerated cellulose fibers spun from 1-butyl-3-methylimidazolium chloride solutions

机译:高强度再生纤维素纤维从1-丁基-3-甲基咪唑氯化物溶液中旋转

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High-performance regenerated cellulose fibers were prepared from cellulose/1-butyl-3-methylimidazolium chloride (BMIMCl) solutions via dry-jet wet spinning. The spinnability of the solution was initially evaluated using the maximum winding speed of the solution spinning line under various ambient temperatures and relative humidities in the air gap. The subsequent spinning trials were conducted under various air gap conditions in a water coagulation bath. It was found that low temperature and low relative humidity in the air gap were important to obtain fibers with high tensile strength at a high draw ratio. From a 10 wt % cellulose/BMIMCl solution, regenerated fibers with tensile strength up to 886 MPa were prepared below 22 degrees C and relative humidity of 50%. High strengthening was also strongly linked with the fixation effect on fibers during washing and drying processes. Furthermore, an effective attempt to prepare higher performance fibers was conducted from a higher polymer concentration solution using a high molecular weight dissolving pulp. Eventually, fibers with a tensile strength of approximate to 1 GPa and Young's modulus over 35 GPa were prepared. These tensile properties were ranked at the highest level for regenerated cellulose fibers prepared by an ionic liquid-based process. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45551.
机译:通过干射流湿纺丝由纤维素/ 1-丁基-3-甲基咪唑氯化物(BmimCl)溶液制备高性能再生纤维素纤维。最初使用溶液纺丝线下的各种环境温度和气隙中相对湿度的最大绕组速度来评估溶液的可旋转性。随后的纺丝试验在水凝固浴中的各种气隙条件下进行。发现气隙中的低温和低相对湿度对于以高拉伸比获​​得具有高抗拉强度的纤维。从10wt%纤维素/ bmimcl溶液中,制备高达886MPa的拉伸强度的再生纤维,低于22℃,相对湿度为50%。在洗涤和干燥过程中,高强度也与纤维的固定效果强烈连接。此外,使用高分子量溶解纸浆从更高的聚合物浓度溶液进行制备更高的性能纤维的有效尝试。最终,制备具有近似近1GPa和杨氏模量的拉伸强度超过35GPa的纤维。将这些拉伸性质在最高水平中排名,用于通过离子液体基方法制备的再生纤维素纤维。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45551。

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