[1]Fitzer E. The future of carbon-carbon composites. Carbon,1987, 25(2): 163-190.
[2]Bourrat X, Trouvat B, Limousin G, et al. Pyrocarbon anisotropy as measured by electron diffraction and polarized light.Journal of Materials Research, 2000,15(1):92-101.
[3]Reznik B, Guellali M, Gerthsen D, et al. Microstructure and mechanical properties of carbon-carbon composites with multilayered pyrocarbon matrix. Materials Letters, 2002, 52(1/2):14-19.
[4]Guellali M, Oberacker R, Hoffmann M J. Influence of the matrix microstructure on the mechanical properties of CVI-infiltrated carbon fiber felts. Carbon, 2005, 43(9):1954-1960.
[5]徐国忠, 李贺军, 白瑞成, 等 (XU Guo-Zhong, et al). 新技术制备C/C 复合材料及特性研究.无机材料学报(Journal of Inorganic Materials), 2006, 21(6):1385-1389.
[6]和永岗, 李克智, 李贺军, 等(HE Yong-Gang, et al). 粗糙层组织结构2D-C/C 复合材料的制备及特性.材料研究学报(Chinese Journal of Materials Research), 2009, 23(2): 138-142.
[7]Reznik B, Hüttinger K J. On the terminology for pyrolytic carbon.Carbon, 2002, 40(4): 620-624.
[8]Rodigues Junior Sinval A, Ferracane Jack L, Bona Alvaro Dela. Flexural strength and weibull analysis of a microhybrid and a nanofill composite evaluated by 3- and 4-point bending tests.Dental Materials, 2008, 24(3): 426-431.
[9]Reznik B, Gerthsen D. Microscopic study of failure mechanisms in infiltrated carbon fiber felts.Carbon,2003, 41(1): 57-69.
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