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Effect of Degree of Polymerization on the Mechanical Properties of Regenerated Cellulose Fibers Using Synthesized 1-Allyl-3-methylimidazolium Chloride

机译:聚合度对合成的1-烯丙基-3-甲基咪唑鎓氯化物对再生纤维素纤维力学性能的影响

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摘要

1-Ally-3-methylimidazolium chloride ([AMIM]C1) was successfully synthesized and was used as a green spinning solvent for cellulose. The celluloses of various degrees of polymerization (DP) were dissolved in the [AMIM]Cl to obtain 5 % (w/w) cellulose solutions, which were regenerated to cellulose fibers through wet spinning process. Of three different regenerated cellulose fibers with different DPs, a DP of 2,730 was gave the strongest regenerated fiber without drawing having a tensile strength of 177 MPa and an elongation at break of 9.6 % respectively, indicating that celluloses of higher molecular weight can be entangled and oriented more easily. Also maximum draw ratio of the as-spun fibers increased from 1.2 to 1.7 with increasing degree of polymerization leading to a tensile strength and modulus of 207 MPa and 48 GPa, respectively. Particularly the tensile modulus was substantially higher than those of lyocell and high performance viscose fibers of 20 GPa or less. The higher DP of pristine cellulose was critical in increasing the mechanical properties such as tensile strength and elongation at break of the as-spun fibers coupled with higher tensile modulus after drawing.
机译:成功合成了1-Ally-3-甲基咪唑鎓氯化物([AMIM] C1),并用作纤维素的绿色纺丝溶剂。将各种聚合度(DP)的纤维素溶解在[AMIM] Cl中,以获得5%(w / w)的纤维素溶液,通过湿法纺丝工艺将其再生为纤维素纤维。在三种具有不同DPs的不同再生纤维素纤维中,DP为2,730,得到的最强再生纤维没有拉伸,分别具有177 MPa的抗拉强度和9.6%的断裂伸长率,表明较高分子量的纤维素可以缠结和定位更容易。随着聚合度的提高,初纺纤维的最大拉伸比也从1.2增加到1.7,分别导致拉伸强度和模量分别为207 MPa和48 GPa。特别地,拉伸模量显着高于莱赛尔和20 GPa或更小的高性能粘胶纤维的拉伸模量。原始纤维素的较高DP对提高机械性能(如初纺纤维的抗张强度和断裂伸长率)以及拉伸后的较高拉伸模量至关重要。

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