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Modification of polyacrylonitrile (PAN) precursor fiber via postspinning plasticization and stretching.

机译:通过后纺塑化和拉伸改性聚丙烯腈(PAN)前体纤维。

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Post-spinning modification of polyacrylonitrile carbon fiber precursors was performed using plasticization methods with the intention of removing surface defects (to improve tensile strength), attenuating fiber diameter (to promote more uniform heat treatment), and reducing intermolecular dipole interactions (to allow further molecular orientation). Among the various organic and inorganic solutions tested, treatment using aqueous dimethyl formamide (DMF) offers far and away the best properties. Tested individually, fibers exposed to 80% DMF for ten seconds gave the highest precursor values of elastic modulus (9.07 GPa) and tensile strength (675 MPa). The other solutions tested (i.e., DMSO, ZnCl2, and CuCl) produced fibers offering no improvement over drawn, untreated PAN fibers. While fibers treated in 80% DMF gave a 73% improvement in elastic modulus and a 53% improvement in tensile strength over as-received PAN, limitations in sample preparation and carbonization necessitated a reduction in DMF concentration (to 30%) to allow extraction of individual carbon fibers for tensile testing. Despite this compromise, results ultimately showed a 32% improvement in carbon fiber elastic modulus and a 14% improvement in carbon fiber tensile strength over regularly prepared carbon fibers. Analysis using additional characterization methods (e.g., WAXS, SEM) suggests that these improvements are due in part to improved lateral order, larger crystallite size, and prevention of skin-core formation.
机译:聚丙烯腈碳纤维前体的纺丝后改性是使用增塑方法进行的,目的是消除表面缺陷(以改善拉伸强度),减弱纤维直径(以促进更均匀的热处理)并减少分子间偶极相互作用(以允许进一步的分子相互作用)。取向)。在测试的各种有机和无机溶液中,使用二甲基甲酰胺水溶液(DMF)进行处理可提供最佳的性能。单独测试,暴露于80%DMF的纤维十秒钟的纤维的弹性模量(9.07 GPa)和拉伸强度(675 MPa)最高。测试的其他溶液(即DMSO,ZnCl 2 和CuCl)生产的纤维与未拉伸的未处理PAN纤维相比没有任何改善。尽管用80%DMF处理过的纤维与原先的PAN相比,弹性模量提高了73%,拉伸强度提高了53%,但由于样品制备和碳化的局限性,DMF浓度必须降低(至30%)才能提取出用于拉伸测试的单个碳纤维。尽管有这些折衷,结果最终表明,与常规制备的碳纤维相比,碳纤维的弹性模量提高了32%,碳纤维的拉伸强度提高了14%。使用其他表征方法(例如WAXS,SEM)的分析表明,这些改进部分归因于改善了的侧向顺序,更大的微晶尺寸以及防止了皮芯形成。

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