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Structure and Properties of a Metallocene Polypropylene Resin with Low Melting Temperature for Melt Spinning Fiber Application

机译:熔融纺丝用低熔点金属茂聚丙烯树脂的结构与性能

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摘要

An isotactic polypropylene (iPP-1) resin with low melting temperature (Tm) is synthesized by a metallocene catalyst and investigated for melt-spun fiber applications. The structure, thermal and mechanical properties, and feasibility of producing fibers of a commercial metallocene iPP (iPP-2) and a conventional Ziegler–Natta iPP (iPP-3) are carefully examined for comparison. Tm of iPP-1 is about 10 °C lower than the other two samples, which is well addressed both in the resin and the fiber products. Besides, the newly developed iPP-1 possesses higher isotacticity and crystallinity than the commercial ones, which assures the mechanical properties of the fiber products. Thanks to the addition of calcium stearate, its crystal grain size is smaller than those of the two other commercial iPPs. iPP-1 shows a similar rheological behavior as the commercial ones and good spinnability within a wide range of take-up speeds (1200–2750 m/min). The tensile property of fibers from iPP-1 is better than commercial ones, which can fulfill the application requirement. The formation of the mesomorphic phase in iPP-1 during melt spinning is confirmed by the orientation and crystallization investigation with wide angle X-ray diffraction (WAXD), which is responsible for its excellent processing capability and the mechanical properties of the resultant fibers. The work may provide not only a promising candidate for the high-performance PP fiber but also a deep understanding of the formation mechanism of the mesomorphic phase during fiber spinning.
机译:通过茂金属催化剂合成了具有低熔融温度(Tm)的全同立构聚丙烯(iPP-1)树脂,并研究了其在熔纺纤维中的应用。仔细检查了商业茂金属iPP(iPP-2)和传统的齐格勒-纳塔iPP(iPP-3)的结构,热和机械性能以及生产纤维的可行性,以进行比较。 iPP-1的Tm比其他两个样品低约10°C,这在树脂和纤维产品中都得到了很好的解决。此外,新开发的iPP-1具有比商业产品更高的全同立构规整度和结晶度,从而确保了纤维产品的机械性能。由于添加了硬脂酸钙,其晶粒尺寸小于其他两种工业iPP的晶粒尺寸。 iPP-1的流变行为与商用类似,并在很宽的卷取速度(1200-2750 m / min)内具有良好的可纺性。 iPP-1纤维的拉伸性能优于商用纤维,可以满足应用要求。熔融纺丝过程中iPP-1中的同质相的形成通过广角X射线衍射(WAXD)的取向和结晶研究得到证实,这归因于其出色的加工能力和所得纤维的机械性能。这项工作不仅可以为高性能PP纤维提供有希望的候选者,而且可以深入理解纤维纺丝过程中的同相相的形成机理。

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