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Solvated mesophase pitch-based carbon fibers: thermal-oxidative stabilization of the spun fiber

机译:溶剂化的中间相沥青基碳纤维:纺丝纤维的热氧化稳定性

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摘要

Potentially low-cost, continuous carbon fiber (CF) was prepared by meltblown spinning of solvated mesophase pitch, followed by drying, oxidation and carbonization. The drying and oxidation stabilization of the spun fiber was investigated by thermal analysis to understand the thermal behavior of the fiber and to improve the mechanical properties of the resulting CFs. The solvents in the spun fiber can be almost completely removed by heating the fiber in the flowing N-2 or argon. In contrast, less amounts of solvents were removed as the spun fiber was dried in air because some solvents could be oxidized and/or trapped by the oxidized pitch materials. The separate drying and oxidation processes not only remove solvents effectively, but also promote oxidation stabilization. Thin fiber gains more weight (oxygen uptake) than the thick fiber at the same stabilization conditions. Moisture is easily adsorbed onto the stabilized fibers due to the formation of oxygen-containing groups. The moisture uptake increases proportionally with oxidation time. As compared with simultaneous drying and oxidation in air, the separate drying and oxidation processes provide the prepared CF with a significant improvement in tensile strength and modulus. For larger diameter fibers, the optimum oxidation condition is 350 A degrees C for 30-60 min; for smaller diameter fibers, it is only about 2 min. Due to shorter oxidation time, higher carbon yield is achieved in resulting CFs.
机译:通过溶解的中间级间距熔喷纺丝制备潜在的低成本,连续碳纤维(CF),然后通过干燥,氧化和碳化。通过热分析研究纺丝纤维的干燥和氧化稳定,以了解纤维的热行为并改善所得CFS的机械性能。通过在流动的N-2或氩气中加热纤维,可以几乎完全除去纺丝纤维中的溶剂。相反,将少量溶剂除去,因为纺丝纤维在空气中干燥,因为一些溶剂可以被氧化间距材料氧化和/或捕获。单独的干燥和氧化过程不仅可以有效去除溶剂,而且促进氧化稳定性。在相同的稳定条件下,薄纤维比厚纤维更重量(氧吸收)。由于形成含氧基团,水分容易吸附到稳定的纤维上。水分吸收与氧化时间成比例地增加。与空气中同时干燥和氧化相比,单独的干燥和氧化方法提供制备的CF,其抗拉强度和模量显着改善。对于较大直径的纤维,最佳氧化条件为350℃,30-60分钟;对于较小的直径纤维,它仅为2分钟。由于氧化时间较短,因此在得到的CFS中实现了更高的碳产率。

著录项

  • 来源
    《Journal of Materials Science》 |2017年第13期|共12页
  • 作者单位

    Univ Tennessee Inst Space 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

    Univ Tennessee Inst Space 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

    Univ Tennessee Inst Space 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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