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High-Speed Melt Spinning of Sheath-Core Bicomponent Polyester Fibers: High and Low Molecular Weight Poly(ethylene Terephthalate) Systems

机译:鞘芯双组分聚酯纤维的高速熔融纺丝:高和低分子量聚对苯二甲酸乙二醇酯体系

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摘要

Sheath-core bicomponent spinning of high molecular weight poly(ethylene terephthalate) (HMPET, Ⅳ = 1.02 dl/g) and low molecular weight pet (LMPET, Ⅳ = 0.65 dl/g) is done at a take-up velocity range of 1 to 7 km/min. The structures of the individual components in the as-spun bicomponent fibers are characterized. Orientation and orientation-induced crystallization of the HMPET component are enhanced, while those of the LMPET component are suppressed in comparison to corresponding single component spinning. Numerical simulation with the Newtonian model shows that elongational stress in the HMPET component is enhanced and that of the LMPET decreases during high-speed bicomponent spinning. The difference in elongational viscosity is the main factor influencing the mutual interaction between HMPET and LMPET, which in turn affect spinline dynamics, solidification temperature, and structural development in high-speed bicomponent spinning. Simulation with an upper-convected Maxwell model shows that considerable stress relaxation can occur in the LMPET component if the HMPET component solidifies before LMPET. A mechanism for structural development is also proposed, based on the simulation results and structural characterization data.
机译:高分子量聚对苯二甲酸乙二酯(HMPET,Ⅳ= 1.02 dl / g)和低分子量pet(LMPET,Ⅳ= 0.65 dl / g)的皮芯双组分纺丝以1的卷取速度范围进行至7 km / min。表征了初纺双组分纤维中各个组分的结构。与相应的单组分纺丝相比,HMPET组分的取向和取向诱导结晶得到增强,而LMPET组分的取向和取向诱导的结晶得到抑制。牛顿模型的数值模拟表明,在高速双组分纺丝过程中,HMPET组件中的拉伸应力增加,而LMPET的伸长应力减小。伸长粘度的差异是影响HMPET和LMPET之间相互作用的主要因素,这反过来又影响纺丝线动力学,凝固温度和高速双组分纺丝的结构发展。用上对流麦克斯韦(Maxwell)模型进行的仿真表明,如果HMPET组件在LMPET之前凝固,则LMPET组件会发生相当大的应力松弛。根据仿真结果和结构表征数据,还提出了一种结构发展的机制。

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