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The effect of liquid stabilization on the structures and the conductive properties of polyimide-based graphite fibers

机译:液体稳定化对聚酰亚胺基石墨纤维结构和导电性能的影响

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摘要

Polyimide (PI) fibers, stabilized under reflux of hot nitric acid, are carbonized and graphitized in an inert atmosphere to obtain polyimide-based graphite fibers (PI-GFs). The results of DSC show that the exothermic interval of stabilized PI fibers becomes broad, accompanied by a reduction in total heat release, from 875.18 mW mg(-1) (non-stabilized) to 166.13 mW mg(-1) (stabilized for 15 min). And the carbon yields substantially increase, from the initial 15.98% (non-stabilized) to 49.93% (stabilized for 30 min) as proved by TGA. In addition, when the stabilization time is over 15 min, some defects such as cracks will appear on the fiber surface, which have a negative influence on the properties of the resulting PI-GFs. After being graphitized at 2800 degrees C, the stabilized PI-GFs have a high degree of graphitization and thermal conductivity which could be as high as 415.35 W m(-1) K-1. It is indicated that PI fibers may be a good potential candidate for graphite fibers with high conductivity.
机译:在热硝酸回流下稳定的聚酰亚胺(PI)纤维在惰性气氛下碳化和石墨化,从而获得基于聚酰亚胺的石墨纤维(PI-GFs)。 DSC的结果表明,稳定的PI纤维的放热间隔变宽,总热量释放从875.18 mW mg(-1)(稳定)降低到166.13 mW mg(-1)(稳定15分钟)。 TGA证明,碳收率大幅提高,从最初的15.98%(稳定)提高到49.93%(稳定30分钟)。此外,当稳定时间超过15分钟时,纤维表面会出现一些缺陷,例如裂纹,这会对所得PI-GF的性能产生负面影响。在2800摄氏度下进行石墨化后,稳定的PI-GF具有很高的石墨化度和导热率,可高达415.35 W m(-1)K-1。表明PI纤维对于具有高导电性的石墨纤维而言可能是良好的潜在候选者。

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