LIU Zhan-jun, GUO Quan-gui, LIU Lang, SHI Jing-li, ZHAI Geng-tai. Influence of filler type on the performance and microstructure of a carbon/graphite material. New Carbon Mater., 2010, 25(04): 313-316. doi: 10.1016/S1872-5805(09)60035-4
Citation: LIU Zhan-jun, GUO Quan-gui, LIU Lang, SHI Jing-li, ZHAI Geng-tai. Influence of filler type on the performance and microstructure of a carbon/graphite material. New Carbon Mater., 2010, 25(04): 313-316. doi: 10.1016/S1872-5805(09)60035-4

Influence of filler type on the performance and microstructure of a carbon/graphite material

doi: 10.1016/S1872-5805(09)60035-4
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  • Author Bio:

    LIU Zhan-jun (1975-), male, Ph.D., engaged in research and exploitation of new carbon materials. Tel: +86-351-4084106, E-mail: zjliu03@sohu.com

  • Corresponding author: LIU Lang
  • Received Date: 2009-01-22
  • Accepted Date: 2010-08-25
  • Rev Recd Date: 2010-08-03
  • Publish Date: 2010-08-10
  • Carbon/graphite material was prepared by subjecting a mixture of coal-tar pitch binder and a relevant filler to uniaxial compression at 150MPa for 10min, followed by calcination at 1300℃ for 1 h, and graphitization at 2300℃ in an induction furnace. Four fillers, carbon black (CB), petroleum-coke powder, needlecoke powder, and natural graphite powder (NG), were used. The effect of filler type on the performance and microstructure of the material was investigated. Results reveal that the CB-based material has excellent flexural and compressive strength, with the highest values of 88.0 and 173.2MPa, respectively, but poor thermal and electrical conductivity. The thermal conductivity of the NGbased material has the highest value of 278W/m · K, but the flexural and compressive strength are limited to 51.1 and 90.2MPa, respectively. Microstructural analysis showed that the NG-based material has the largest crystallite size, as well as the most perfect orientation of graphite layers.
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