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Non-woven fabrics of fine regenerated cellulose fibers prepared from ionic-liquid solution via wet type solution blow spinning

机译:通过湿式溶液吹纺的离子液溶液制备的精细再生纤维素纤维的无纺布织物

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A wet type solution blow spinning system with a water-mist coagulation chamber was developed to spin fine regenerated cellulose fibers from the non-volatile ionic liquid solvent 1-ethyl-3-methylimidazolium diethyl phosphate. The molecular weight distribution of cellulose, and the rheological properties and spinnability of its spinning solution were evaluated. Scanning electron microscope observations indicated that the fine water mist/vapor was important for efficient coagulation of the stretched solution jets. Under optimized spinning parameters, a non-woven fabric was obtained consisting of fine fibers with an average diameter of 0.98 +/- 0.62 mu m. The tensile strength of the samples was greatly influenced by the fabric structure formed upon regeneration of cellulose from solution. X-ray diffraction and polarized optical microscopy measurements revealed that the prepared cellulosic non-woven fabric was highly crystalline and had a well-defined molecular orientation, respectively, which might have contributed to the increased tensile strength.
机译:湿式溶液吹纺系统具有水雾凝固室的旋转从非挥发性离子液体溶剂1-乙基-3-甲基咪唑鎓磷酸酯旋转精细再生纤维素纤维。评价纤维素的分子量分布以及其纺丝溶液的流变性能和可纺性能。扫描电子显微镜观察表明,细水雾/蒸气对于拉伸溶液喷射的有效凝固是重要的。在优化的纺丝参数下,由平均直径为0.98 +/-0.62μm的细纤维制备非织造织物。样品的拉伸强度受到在溶液中的纤维素再生时形成的织物结构的影响。 X射线衍射和偏振光显微镜测量显示,制备的纤维素无纺布是高度结晶的并且分别具有明确定义的分子取向,这可能导致抗拉强度的增加。

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