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Study of the coagulated structure and fiber strength with wet spinning of aliphatic polyketone with aqueous composite metal salt solutions

机译:复合金属盐水溶液湿式脂肪族聚酮的纺丝结构和纤维强度研究

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摘要

Poly(I-oxotrimethylene) (ECO) was dissolved in aqueous calcium chloride (CaCl2)/zinc chloride (ZnCl2) composite metal salt solutions, and the solutions had phase-separation temperatures greater than 0 degrees C. A higher proportion of CaCl2 with respect to ZnCl2 increased the phase-separation temperature of the ECO solutions. When wet spinning was carried out with a coagulation bath at 2 degrees C, an ECO solution with a higher phase-separation temperature tended to produce greater ECO fiber strength. Therefore, a higher phase-separation temperature resulted in coagulated filaments with a denser and more homogeneous cross-sectional structure. When the metal salt concentration of the coagulation bath was increased with an ECO solution with a phase-separation temperature of 22 degrees C and a coagulation-bath temperature of 2 degrees C, the strength of the ECO fibers tended to be lower. Although little difference was observed in the uniformity of the fiber cross sections, a higher metal salt concentration in the coagulation bath facilitated greater spherical growth of the coagulated particles. Large, spherical coagulated particles promoted defects during drawing and thus lowered the strength of the ECO fibers. (c) 2005 Wiley Periodicals, Inc.
机译:将聚(I-氧代三亚甲基)(ECO)溶解在氯化钙(CaCl2)/氯化锌(ZnCl2)复合金属盐溶液中,并且该溶液的相分离温度大于0摄氏度。 ZnCl2的加入会增加ECO溶液的相分离温度。当在2℃下用凝固浴进行湿纺时,具有较高的相分离温度的ECO溶液倾向于产生更大的ECO纤维强度。因此,较高的相分离温度导致凝结的长丝具有更致密和更均匀的横截面结构。当通过相分离温度为22℃,凝固浴温度为2℃的ECO溶液提高凝固浴的金属盐浓度时,ECO纤维的强度趋于降低。尽管在纤维横截面的均匀性上观察到很小的差异,但是在凝固浴中较高的金属盐浓度促进了凝固颗粒的更大的球形生长。大的球形凝结颗粒会在拉伸过程中促进缺陷,从而降低ECO纤维的强度。 (c)2005年Wiley Periodicals,Inc.

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