SHI Hong-bin, TANG Min, GAO Bo, SU Jun-ming. Effect of graphitization parameters on the residual stress in 4D carbon fiber/carbon composites. New Carbon Mater., 2011, 26(4): 287-292. doi: 10.1016/S1872-5805(11)60082-6
Citation: SHI Hong-bin, TANG Min, GAO Bo, SU Jun-ming. Effect of graphitization parameters on the residual stress in 4D carbon fiber/carbon composites. New Carbon Mater., 2011, 26(4): 287-292. doi: 10.1016/S1872-5805(11)60082-6

Effect of graphitization parameters on the residual stress in 4D carbon fiber/carbon composites

doi: 10.1016/S1872-5805(11)60082-6
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  • Author Bio:

    SHI Hong-bin(1969-), male, Ph.D., Professor, engaged in the research of carbon/carbon composites. E-mail:leegoop@126.com

  • Received Date: 2010-03-24
  • Accepted Date: 2011-09-08
  • Rev Recd Date: 2011-04-01
  • Publish Date: 2011-08-20
  • A representative volume element model was proposed for C/C composites with the fibers oriented in four different directions. Three of the fiber directions were coplanar, at 120° to each other, and the fourth was perpendicular. The element truly reflects the orientations of the carbon fibers and matches the actual configuration of the composites. Based on the model and computational mesoscopic mechanics, the residual thermal stress distribution of the material at different graphitization temperatures, cooling rates, and interface stiffnesses was obtained using a finite element method. The residual thermal stresses of the composite from a low-graphitization temperature or with low interface stiffness are lower than those from a high-graphitization temperature or with high interface stiffness. The higher the cooling rate, the higher the residual thermal stress.
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