[1] CHAO X J,QI L H,TIAN W L,et al. Numerical evaluation of the influence of porosity on bending properties of 2D carbon/carbon composites[J]. Composites Part B: Engineering,2018,136: 72-80.
[2] LI J,GUO P L,HU C L,et al. Fabrication of large aerogel-like carbon/carbon composites with excellent load-bearing capacity and thermal-insulating performance at 1 800 ℃[J]. ACS Nano,2022,16(4): 6565-6577.
[3] WANG T Y,LI H J,SHEN Q L,et al. Dependence of mechanical properties on microstructure of high-textured pyrocarbon prepared via isothermal and thermal gradient chemical vapor infiltration[J]. Composites Part B: Engineering,2020,192: 107982.
[4] HUANG J F,ZHU J,CAO L Y,et al. Oxidation behaviour of matrix modified carbon/carbon composites by novel solvothermal process[J]. Materials Research Innovations,2012,16(5): 310-315.
[5] BACOS M P,DORVAUX J M,LAVIGNE O,et al. C/C composite oxidation model[J]. Carbon,2000,38(1): 105-117.
[6] WANG T Y,LI H J,ZHANG S Y,et al. The effect of microstructural evolution on micromechanical behavior of pyrolytic carbon after heat treatment[J]. Diamond and Related Materials,2020,103: 107729.
[7] WANG F Q,JI A L,BAI X,et al. Single edge-notched beam fracture toughness of needling C/C composites[J]. Journal of Solid Rocket Technology,2013,36(4): 564-568 (in Chinese).
[8] JIA J G,JU J K,LIU S W,et al. Preparation and mechanical properties of C/C composites reinforced with arrayed SiC columnar pins[J]. Ceramics International,2021,47(17): 24262-24269.
[9] LIU N K,GUO L J,KOU G,et al. Epitaxial grown carbon nanotubes reinforced pyrocarbon matrix in C/C composites with improved mechanical properties[J]. Materials,2021,14(21): 6607.
[10] LI Z J,LIN K P,FANG H L,et al. The mortise and tenon structure enabling lamellar carbon composites of ultra-high bending strength[J]. Journal of Materials Science & Technology,2023,133: 249-258.
[11] GUO Y,ZHANG L L,SONG Q,et al. Simultaneously enhancing mechanical and tribological properties of carbon fiber composites by grafting SiC hexagonal nanopyramids for brake disk application[J]. Journal of Materials Science & Technology,2022,121: 1-8.
[12] KOU G,GUO L J,LI H J,et al. Synchronous growth of bamboo-shaped CNTs and PyC for fabricating super-elastic nanocomposites[J]. Composites Part B: Engineering,2019,174: 107029.
[13] YIN X M,HAN L Y,LIU H M,et al. Recent progress in 1D nanostructures reinforced carbon/carbon composites[J]. Advanced Functional Materials,2022,32(35): 2204965.
[14] ZHANG Z H,CHENG L S,SHENG T Y,et al. SiC nanofiber-coated carbon/carbon composite for electromagnetic interference shielding[J]. ACS Applied Nano Materials,2022,5(1): 195-204.
[15] SUN L N,ZHANG L L,YIN X M,et al. Si3N4 nanowires@pyrolytic carbon nanolayers coupled with hydroxyapatite nanosheets as reinforcement for carbon matrix composites with boosting mechanical and friction properties[J]. Journal of Materiomics,2023,9(1): 197-205.
[16] REINER J,NARAIN D,ZHANG P,et al. Progressive fracture testing of carbon-carbon composites[J]. Ceramics International,2023,49(4): 6451-6458.
[17] MUHAMMED F,LAVAGGI T,ADVANI S,et al. Influence of material and process parameters on microstructure evolution during the fabrication of carbon-carbon composites: a review[J]. Journal of Materials Science,2021,56(32): 17877-17914.
[18] CHENG W,JI A L,LI T H,et al. Investigation on toughness of C/C composites with different reinforcements[J]. Journal of Solid Rocket Technology,2006,29(6): 451-454+459 (in Chinese).
[19] HE Y G,LI K Z,WEI J F,et al. Study on the microstructures and mechanical properties of 2D C/C composites[J]. Journal of Inorganic Materials,2010,25(2): 173-176 (in Chinese).
[20] JIA Y,LI K Z,ZHANG S Y,et al. Microstructure and mechanical properties of multilayer-textured 2D carbon/carbon composites[J]. Journal of Materials Science & Technology,2014,30(12): 1202-1207.
[21] LIU F Q,GUAN Z D,BIAN T Y. Damage model for predicting shear strength of carbon/carbon composite fastener based on post-failure behavior[J]. Composite Structures,2019,221: 110864.
[22] HU C X,LI H J,ZHANG S Y,et al. Chemical vapor infiltration of pyrocarbon from methane pyrolysis: kinetic modeling with texture formation[J]. Science China Materials,2019,62(6): 840-852.
[23] PANG X,ZHANG M S,HONG W,et al. Fabrication process and growth mechanism of novel micro-stack PyC interphase with different textures[J]. Journal of the American Ceramic Society,2023,106(12): 7400-7410.
[24] HUANG R,ZENG F H,PENG Y R,et al. Influence of fiber/matrix interface on the texture evolution and fracture toughness of C/C[J]. Diamond and Related Materials,2022,127: 109112.
[25] State Administration for Market Regulation,Standardization Administration. Test method for C-C composites-Part 2: flexural properties: GB/T 40398.2—2021[S]. Beijing: Standards Press of China,2021 (in Chinese).
[26] LOPEZ-HONORATO E,MEADOWS P J,XIAO P. Fluidized bed chemical vapor deposition of pyrolytic carbon—I. Effect of deposition conditions on microstructure[J]. Carbon,2009,47(2): 396-410.
[27] GUELLALI M,OBERACKER R,HOFFMANN M J,et al. Textures of pyrolytic carbon formed in the chemical vapor infiltration of capillaries[J]. Carbon,2003,41(1): 97-104.
[28] HU C X,LI H J,ZHANG S Y,et al. A molecular-level analysis of gas-phase reactions in chemical vapor deposition of carbon from methane using a detailed kinetic model[J]. Journal of Materials Science,2016,51(8): 3897-3906.
[29] FARBOS B,WEISBECKER P,FISCHER H E,et al. Nanoscale structure and texture of highly anisotropic pyrocarbons revisited with transmission electron microscopy,image processing,neutron diffraction and atomistic modeling[J]. Carbon,2014,80: 472-489.