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首页> 外文期刊>Journal of Macromolecular Science. Physics >Higher-Order Structure of Poly(Ethylene 2,6-Naphthalene Dicarboxylate) Fibers Produced by Direct High-Speed Spin-Drawing
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Higher-Order Structure of Poly(Ethylene 2,6-Naphthalene Dicarboxylate) Fibers Produced by Direct High-Speed Spin-Drawing

机译:通过直接高速旋转拉伸制备的聚(乙烯2,6-萘二羧酸甲酯)纤维的高阶结构

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摘要

In order to efficiently produce poly(ethylene naphthalene-2,6-dicarboxylate) (PEN) fibers comprising alpha-phase crystallites with a high melting temperature, a direct high-speed spin-drawing (HSSD) system was implemented. The higher-order structure of the HSSD PEN fibers was investigated by focusing on the radial anisotropy of the fibers. A nucleating agent was added to the PEN fibers, and its effect on the formation of the higher-order structure was also studied. Highly crystalline PEN fibers predominantly composed of alpha-phase crystallites were produced by operating the HSSD system at 4 km/min. The PEN fibers exhibited a melting temperature of 288.8 degrees C and a storage modulus of 31.4 GPa. The excellent thermal stability of the HSSD PEN fibers was presumably brought about by the formation of a shish-kebab-like structure. The generation of the shish-kebab-like structure and radial anisotropy seemed to be more dependent on the effect of tensile stress during the drawing process rather than from the nucleating additive. The nucleating agent used in this study effectively increased both the alpha- and beta-phase crystallite sizes. Such structural modification, however, did not appear to contribute to the thermal stability enhancement of the PEN fibers.
机译:为了有效地生产具有高熔点的α-相结晶的聚(乙烯萘-2,6-二羧酸甲酯)(笔)纤维,实施了直接高速旋转拉伸(HSSD)系统。通过聚焦纤维的径向各向异性来研究HSSD笔纤维的高阶结构。向笔纤维中加入成核剂,还研究了其对形成高阶结构的影响。主要由α相结晶组成的高度结晶笔纤维通过在4km / min的HSSD系统操作中制备。笔纤维表现出288.8℃的熔化温度和31.4GPa的储存模量。通过形成烤肉串状结构,可能引起HSSD笔纤维的优异热稳定性。 Shish-kebab的结构和径向各向异性的产生似乎更依赖于拉伸过程期间拉伸应力的影响而不是来自核切割添加剂。本研究中使用的成核剂有效增加了α-和β相结晶尺寸。然而,这种结构改性似乎没有有助于笔纤维的热稳定性增强。

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