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Microfibril alignment induced by stretching fields during the dry-jet wet spinning process: Reinforcement on polyacrylonitrile fiber mechanical properties

机译:通过干式湿纺纱过程中拉伸场诱导的微纤维对齐:加固聚丙烯腈纤维机械性能

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摘要

The high-quality polyacrylonitrile (PAN) precursor fibers are indispensable for the manufacture of highperformance carbon fibers. For the purpose of regulating microfibril structures and improving fiber quality, scanning electron microscopy, high-resolution transmission electron microscopy and the nitrogen adsorption measurement were carried out to investigate the microfibril alignment evolution in PAN fibers, which was obtained by different stretching fields during dry-jet wet spinning process. The interconnected microfibrillar network forming in coagulation bath was plastically elongated and gradually developed into the oriented microfibrils while the transverse lamellae formed. Then break-reorganization of the lamellae brought the remarkable enhancement of fiber crystallinity during the hot-treatment process. Finally, the well-aligned and regular microfibrils appeared due to the deep plastic deformation. There were three stages in the total evolution of microfibril alignment: the plastic deformation of microfibrillar network, the fragmentation of the original lamella, and the formation and development of regular microfibrils. The microfibrils in PAN fibers were stacked by crystal layers in an order and tightly manner. Served as excellent reinforcing elements, aligned microfibrils could efficiently improve the fiber mechanical properties. Compared with nascent fiber, the tensile strength of PAN precursor fiber increased by 1492% and its tensile modulus enhanced by 574%.
机译:高质量的聚丙烯腈(PAN)前体纤维对于制造高性能碳纤维是必不可少的。为了调节微纤维结构并改善纤维质量,进行扫描电子显微镜,高分辨率透射电子显微镜和氮吸附测量,以研究PAN纤维中的微纤维排列演化,其通过在干燥期间的不同拉伸场获得。喷射湿纺纱工艺。在横向薄片形成的同时,在凝固浴中形成凝结浴中的互连微纤维族网络形成并逐渐地发展到取向的微纤维中。然后在热处理过程中,薄片的断裂重组使得纤维结晶度显着提高。最后,由于深塑性变形而出现良好的对齐和常规的微纤维。微纤维排列总量的总演化中有三个阶段:微纤维网络的塑性变形,原始薄片的碎片,以及普通微纤维的形成和发育。盘纤维中的微纤维通过晶体层堆叠,并紧紧地堆叠。用作优异的增强元件,对准的微纤维可以有效地改善纤维机械性能。与新生纤维相比,PAN前体纤维的拉伸强度增加了1492%,其拉伸模量增强了574%。

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