Journal of Inorganic Materials ›› 2014, Vol. 29 ›› Issue (11): 1186-1192.DOI: 10.15541/jim20140101

• Orginal Article • Previous Articles     Next Articles

Preparation and Characterization of Ribbon-shaped Mesophase Pitch-based Carbon Fibers with Different Crystal Orientations

XIONG Xiao-Qing1, YUAN Guan-Ming1, LI Xuan-Ke1, DONG Zhi-Jun1, ZHANG Zhong-Wei2, WANG Jun-Shan2   

  1. (1. The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China; 2. Aerospace Research Institute of Materials and Processing Technology, Beijing 100076, China)
  • Received:2014-03-05 Revised:2014-04-17 Published:2014-11-20 Online:2014-10-24
  • About author:XIONG Xiao-Qing. E-mail:xxq88happy@126.com

Abstract:

Using mesophase pitch as the raw material, with the rectangular-section spinnerets at different aspect ratios (length divided by width), ribbon-shaped mesophase pitch-based carbon fibers with various cross-section sizes and crystal orientations were prepared by adjusting the spinning rate. Effects of the heat-treatment temperature and aspect ratio of spinnerets on structure and properties of the ribbon-shaped carbon fibers were investigated. The results show that the aspect ratio of spinneret and the spinning rate of pitch fibers have a significant influence on the crystal orientation of carbon fibers. Within the specified spinning rate of pitch fibers, the crystal orientation of carbon fibers varies from a parallel-fold structure to a vertical-radial structure with the decrease of the aspect ratio of the spinnerets. The electrical conductivity and the mechanical property of ribbon-shaped carbon fibers significantly increase with the increase of heat-treatment temperature. With increase in spinning rate, there is no obvious change in the room-temperature axial electrical resistivity along the longitudinal direction of fiber, whereas obvious changes in the mechanical property are observed. At 30:1 of the aspect ratio of the spinneret and 75 m/min of spinning rate, the tensile strength and young’s modulus of the graphite fibers heat-treated at 2500℃ are up to 2.53 GPa and 234.77 GPa, respectively.

Key words: ribbon-shaped mesophase pitch-based carbon fiber, crystal orientation, electrical resistivity, mechanical property

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