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Fiber Formation and Structural Development of HBA/HNA Thermotropic Liquid Crystalline Polymer in High-Speed Melt Spinning

机译:高速熔化纺丝HBA / HNA热致液晶聚合物的纤维形成和结构发育

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摘要

High-speed melt spinning of thermotropic liquid crystalline polymer (TLCP) resin composed of 4-hydroxybenzoic acid (HBA) and 2-hydroxy-6-napthoic acid (HNA) monomers in a molar ratio of 73/27 was conducted to investigate the characteristic structure development of the fibers under industrial spinning conditions, and the obtained as-spun TLCP fibers were analyzed in detail. The tensile strength and modulus of the fibers increased with shear rate in nozzle hole, draft in spin-line and spinning temperature and exhibited the high values of approximately 1.1 and 63 GPa, respectively, comparable to those of industrial as-spun TLCP fibers, at a shear rate of 70,000 s−1 and a draft of 25. X-ray diffraction demonstrated that the mechanical properties of the fibers increased with the crystalline orientation factor (fc) and the fractions of highly oriented crystalline and non-crystalline anisotropic phases. The results of structure analysis indicated that a characteristic skin–core structure developed at high drafts (i.e., spinning velocity) and low spinning temperatures, which contributed to weakening the mechanical properties of the TLCP fibers. It is supposed that this heterogeneous structure in the cross-section of the fibers was induced by differences in the cooling rates of the skin and core of the fiber in the spin-line.
机译:对由4-羟基苯甲酸(HBA)和2-羟基-6-萘甲酸(HNA)单体组成的热致液晶聚合物(TLCP)树脂的高速熔融纺丝,以摩尔比为73/27,以研究特征在工业纺丝条件下的纤维的结构开发,并详细分析了所获得的SPIN TLCP纤维。纤维的拉伸强度和模量随着喷嘴孔的剪切速率而增加,旋转线和纺丝温度的脱发,并分别表现出约1.1和63GPa的高值,与工业的纺丝TLCP纤维相当,在剪切速率为70,000 s-1和25的草稿。X射线衍射表明,纤维的机械性能随着晶体取向因子(Fc)和高度取向的晶体和非晶体各向异性相的级分而增加。结构分析结果表明,在高喷射(即纺丝速度)和低纺丝温度下开发的特征性皮质结构,这有助于减弱TLCP纤维的机械性能。假设在纤维的横截面的横截面中的这种异质结构被旋转线中纤维的冷却速率的差异诱导。

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