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Oxidative stabilization of PAN/SWNT composite fiber

机译:PAN / SWNT复合纤维的氧化稳定

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PAN/SWNT composite fibers have been spun with 0, 5, and 10 wt percent single wall carbon nanotubes (SWNTs). Tensile fracture surfaces of polyacrylonitrile (PAN) fibers exhibited extensive fibrillation, while for PAN/SWNT composite fibers, tendency to fibrillate decreased with increasing SWNT content. The reinforcing effect of SWNTs on the oxidized polyacrylonitrile (PAN) fiber has been studied. At 10wt percent SWNTs, breaking strength, modulus, and strain to failure of the oxidized composite fiber increased by 100 percent, 160 percent, and 115 percent, respectively. Tensile fracture surfaces of thermally stabilized PAN and the PAN/SWNT fibers exhibited brittle behavior and well distributed SWNT ropes covered with the oxidized matrix can be observed in the tensile fracture surfaces of the fibers. No de-bonding has been observed between unoxidized or the oxidized PAN matrix and the nanotube ropes. Higher strain to failure of the oxidized composite fiber as compared to that of the oxidized control PAN fiber also suggests good adhesion/interaction between SWNT and the oxidized matrix. Thermal stresses generated on the composite fiber during the oxidation process were lower than those for the control fiber. The potential of PAN/SWNT composite fiber as the precursor material for the carbon fiber has been discussed.
机译:PAN / SWNT复合纤维已经用0、5%和10 wt%的单壁碳纳米管(SWNT)纺制。聚丙烯腈(PAN)纤维的拉伸断裂表面表现出广泛的原纤化,而对于PAN / SWNT复合纤维,随着SWNT含量的增加,原纤化趋势降低。研究了单壁碳纳米管对氧化聚丙烯腈(PAN)纤维的增强作用。 SWNTs含量为10wt%时,氧化复合纤维的断裂强度,模量和断裂应变分别增加了100%,160%和115%。热稳定的PAN和PAN / SWNT纤维的拉伸断裂表面表现出脆性,并且在纤维的拉伸断裂表面中观察到分布良好的分布有被氧化基质覆盖的SWNT绳索。在未氧化或已氧化的PAN基质与纳米管绳之间未观察到解键。与氧化的对照PAN纤维相比,氧化的复合纤维的较高的破坏破坏应变也表明SWNT与氧化的基质之间具有良好的粘合/相互作用。在氧化过程中,复合纤维上产生的热应力要低于对照纤维。讨论了PAN / SWNT复合纤维作为碳纤维前体材料的潜力。

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