首页> 外文期刊>Journal of Macromolecular Science. Physics >Preparation of High-Quality Polyacrylonitrile Precursors for Carbon Fibers Through a High Drawing Ratio in the Coagulation Bath During a Dry-Jet Wet Spinning Process
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Preparation of High-Quality Polyacrylonitrile Precursors for Carbon Fibers Through a High Drawing Ratio in the Coagulation Bath During a Dry-Jet Wet Spinning Process

机译:在干式湿纺过程中通过凝固浴中的高拉伸比制备碳纤维的高质量聚丙烯腈前体

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摘要

Excellent poly(acrylonitrile-co-itaconic acid) (99/1) (PAI) nascent fibers, which have an important role in preparing high-quality precursors for carbon fibers, were prepared by a dry-jet wet spinning process. Their structures were determined by X-ray diffraction (XRD), scanning electron microscopy (SEM) and an ultrasound solvent etching method, as well their properties being determined by a strength and extension meter and a fineness meter, both designed specifically for fibers. When a high drawing ratio, over 300%, was applied to the fibers in the dry-jet wet spinning coagulation bath, the molecular chains were easy to orient and regularly arrange, resulting in the relative crystallinity, crystal size and amorphous orientation degree of the nascent fibers being improved. The fibrils with large diameter were formed, increasing the bulk density with the overall porosity and pore numbers decreasing. Therefore, the nascent fibers had smaller diameters, higher strength, higher rupture elongation and smaller coefficients of variation. The optimum high performance PAI precursor fibers, with 0.59dtex in titer, 7.51cN/dtex in tensile strength, 7.9% in rupture elongation and the final carbon fiber with 5.54GPa in tensile strength, were obtained through a post-spinning treatment in which they were subjected to a high coagulation bath draw ratio and carbonization.
机译:优异的聚(丙烯腈 - 共衣康酸)(99/1)(PAI)新纤维在制备碳纤维的高质量前体方面具有重要作用,通过干射流湿纺法制制备。它们的结构由X射线衍射(XRD),扫描电子显微镜(SEM)和超声溶剂蚀刻方法确定,并且它们的性质也通过强度和延长仪和细度计,包括专门用于纤维。当高拉伸比超过300%的纤维上施加到干式湿纺凝固浴中的纤维上时,分子链易于定向并规则地布置,导致相对结晶度,晶体尺寸和无定形方向度新生的纤维得到改善。形成具有大直径的原纤维,增加堆积密度,孔隙率和孔隙数减小。因此,新鲜的纤维直径较小,强度更高,破裂伸长率较高,变化系数较小。最佳高性能Pai前体纤维,滴度0.59dtex,拉伸强度为7.51cn / dtex,在破裂伸长率和最终碳纤维中,通过旋转后的处理获得了5.54gpa的最终碳纤维。经受高凝血浴拉伸比和碳化。

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