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聚丙烯腈基炭纤维的制备
引用本文:王艳芝,朱波,王延相,蔡华苏.聚丙烯腈基炭纤维的制备[J].新型炭材料,2001,16(4):12-17.
作者姓名:王艳芝  朱波  王延相  蔡华苏
作者单位:山东大学南校区材料学院炭纤维中心,山东济南,250061
基金项目:国家自然科学基金 ( 5 97830 0 2 ),山东省自然科学基金 ( 981175 10 1)~~
摘    要:采用丙烯腈(AN)与衣糠酸(IA)自由基溶液共聚合,以偶氮二异丁腈(AIBN)为引发剂,在二甲基亚砜(DMSO)中合成了聚丙烯腈肪丝溶液,经湿法纺丝制得聚丙烯腈(PAN)原丝。在原丝牵伸的最后一般用CoSO4水溶液浸渍改性。利用SEM、TEM和热稳定化过程研究等方法进行对比研究改性前后纤维的结构与性能。结果表明:CoSO4能催化PAN原丝的热稳定化、环化反应,缩短预氧化时间,并能提高最终炭纤维的机械性能。

关 键 词:聚丙烯腈  原丝  改性  结构  性能  炭纤维  制备

STUDY ON THE PREPARING OF POLYACRYLONITRILE-BASED CARBON FIBE RS
Abstract.STUDY ON THE PREPARING OF POLYACRYLONITRILE-BASED CARBON FIBE RS[J].New Carbon Materials,2001,16(4):12-17.
Authors:Abstract
Abstract:Free radical solution copolymerization of itaconic acid and acrylonitrile was carried out in DMSO using azodiisobutyronitrile as initiator with changing the feed rate of itaconic acid. The resulting polymerization solution was spun to form PAN precursors of carbon fibers. The precursors were treated with CoSO 4 aqueous solution on the line. The structure and properties of untreated and treated PAN precursors and resultant carbon fibers were characterized by SEM and TEM, stabilization process and so on. It was suggested that CoSO 4 acted as a catalyst in the formation of ladder structure and reduces the temperature of cyclization. The carbon fibers developed from treated PAN fibers showed an improvement in tensile strength and Young's modulus.
Keywords:PAN precursor  Modification and manufacture  Structure and properties  Carbon fiber
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