• Chinese Optics Letters
  • Vol. 19, Issue 7, 073401 (2021)
Ke Li1、2、3, Yantao Gao1, Haipeng Zhang1、2、3, Guohao Du2, Hefei Huang1, Hongjie Xu1、*, and Tiqiao Xiao1、2、3、**
Author Affiliations
  • 1Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Shanghai Synchrotron Radiation Facility/Zhangjiang Lab, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201204, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.3788/COL202119.073401 Cite this Article Set citation alerts
    Ke Li, Yantao Gao, Haipeng Zhang, Guohao Du, Hefei Huang, Hongjie Xu, Tiqiao Xiao. Efficient three-dimensional characterization of C/C composite reinforced with densely distributed fibers via X-ray phase-contrast microtomography[J]. Chinese Optics Letters, 2021, 19(7): 073401 Copy Citation Text show less

    Abstract

    Carbon fiber (CF)/pyrolytic graphite (PG) composites are promising structural materials for molten salt reactors because of their superior performance. Due to the minor density difference between CF and PG, existing methods are impractical for efficient three-dimensional characterization of CF/PG composites. Therefore, in this study, a method based on in-line phase-contrast X-ray microtomography was developed to solve the aforementioned problem. Experimental results demonstrate that the method is suitable for comprehensive characterization of CF/PG composites. The relationship between the microporous defects and fiber orientations of such composites was also elucidated. The findings can be useful for improving the manufacturing process of CF/PG composites.
    (Δx)min=2σdet(NF+NF1)arctanNF1,

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    Cmax=2/π(1+NF2)1/4F(NFarctanNF1,NF)|φ|max,F(x,NF)=0xexp(t2/2)sin[(1/2)arctanNF1t2/(2NF)]dt,

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    φθ(x,y)=12εln{F1{F[Iθ(x,y,z)]1+πελz(ξ2+η2)}},

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    δ(x,y,z)=λ2π0πφθ(x,y)*νdθ,

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    Ke Li, Yantao Gao, Haipeng Zhang, Guohao Du, Hefei Huang, Hongjie Xu, Tiqiao Xiao. Efficient three-dimensional characterization of C/C composite reinforced with densely distributed fibers via X-ray phase-contrast microtomography[J]. Chinese Optics Letters, 2021, 19(7): 073401
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