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Fiber-Rounding-Hole Microstructure of Antler and Biomimetic Research
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State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University,

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中图法分类号:TB3301;TB39

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    Abstract:

    The observation of scanning electron microscope shows that the cortical layer of antler is a kind of nature bioceramic composite consisting of mineral-collagen fibers and collagen-protein matrix. The observation also shows that there are many micro-holes in the cortical layer and that the strengthening mineral-collagen fibers circuitously round these holes which compose a kind of the circuitously-rounding-hole structure of the mineral-collagen fibers. The analytical models of the composites, respective with the circuitously-rounding-hole and non-circuitously-rounding-hole structures of the fibers are built. The fracture strength of the composite model with the circuitously-rounding-hole structure is analyzed and compared with that of the composite model with the non-circuitously-rounding-hole structure. The analytical result shows that the fracture strength of the composite model with the circuitously-rounding-hole structure is remarkably larger than that of the composite model with the non-circuitously-rounding-hole structure. Based on the results of the experimental observations and model analyses, a kind of biomimetic composite laminate with the circuitously-rounding-hole structure is fabricated with carbon fibers and epoxy resin. The fracture strength of the composite with the circuitously-rounding-hole structure was tested and compared with that of the composite with the non-circuitously-rounding-hole structure. The testing results show that the fracture strength of the composite with the circuitously-rounding-hole structure is remarkably larger than that of the composite with the non-circuitously-rounding-hole structure.

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[Chen Bin, Fang Zhongqi. Fiber-Rounding-Hole Microstructure of Antler and Biomimetic Research[J]. Rare Metal Materials and Engineering,2018,47(S1):457~461.]
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History
  • Received:July 24,2017
  • Revised:March 14,2018
  • Adopted:March 19,2018
  • Online: October 22,2018
  • Published: