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Optimization of spinning conditions and prediction on PET staple fibers' melt spinning

机译:纺丝条件的优化及PET短纤维的熔融纺丝预测

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In this work, the method, in principle of the box complex algorithm was adopted to obtain coefficient of expression of EYS 1.5 which is the elongation corresponding to 1.5 times yielding stress in stress- strain curve. In view of PET staple fibers with 1.56dtex, the relationship between EYS1.5 and spinning conditions including take-up velocity, annealed length, quench air velocity, quench air temperature, extrusion temperature and intrinsic viscosity was obtained. The spinning condition was optimized provided that the as-spun fibers experienced the same values of EYS1.5 and coefficient of variation (CV). The properties of other type staple fibers with 1.33dtex, 1.11dtex and 0.89dtex respectively, were also predicted and verified and the spinning conditions were optimized as well.
机译:在这项工作中,原则上采用盒形复数算法的方法获得了EYS 1.5的表达系数,该系数是应力-应变曲线中对应于1.5倍屈服应力的伸长率。针对具有1.56dtex的PET短纤维,获得了EYS1.5与纺丝条件的关系,包括卷取速度,退火长度,骤冷空气速度,骤冷空气温度,挤出温度和特性粘度。只要纺出的纤维具有相同的EYS1.5和变异系数(CV),就可以优化纺丝条件。还预测并验证了其他类型的短纤维,分别具有1.33dtex,1.11dtex和0.89dtex的性能,并优化了纺丝条件。

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