[1]
Xianghui Hou, Hejun Li, Can Wang, Zhengang Zhu, Jian Shen. Internal friction behavior of carbon-carbon composites. Carbon, 2000, 38: 2095-2101.
DOI: 10.1016/s0008-6223(00)00069-5
Google Scholar
[2]
R. Si, G. Hu, H. Li, et al. Interfacial Microstructures of Intrabundle in as-Received Carbon/Carbon Composites Prepared by CVI. Carbon, 1998, 36(9): 1331.
DOI: 10.1016/s0008-6223(98)00114-6
Google Scholar
[3]
A Ozturk. The influence of cyclic fatigue damage on the fracture toughness of carbon/carbon composites. Compoties Part A, 1996, 27A: 641-646.
DOI: 10.1016/1359-835x(96)00035-8
Google Scholar
[4]
H Mahfuz, M Maniruzzaman, J Krishagopalan, A Haque, M Ismail, S Jeelani. Effects of stress ratio on fatigue life of carbon/carbon composites. Theoretical and Applied Fracture Mechanics, 1995, 24: 21-31.
DOI: 10.1016/0167-8442(95)00028-d
Google Scholar
[5]
T Fend, J Goering. Strength and fatigue behavior of 2D-carbon/carbon composites under shear conditions. Ceram Trans, 1994, 46: 165-76.
Google Scholar
[6]
Ken Goto, Hiroshi Hatta, Daisuke Katsu, Terufumi Machida. Tensile fatigue of a laminated carbon-carbon composite at room temperature. Carbon, 2003, (41): 1249-1255.
DOI: 10.1016/s0008-6223(03)00040-x
Google Scholar
[7]
A Ozturk, R E Moore. Tensile fatigue behaviour of tightly woven carbon/carbon composites. Composites, 1992, 23: 39-46.
DOI: 10.1016/0010-4361(92)90284-2
Google Scholar
[8]
D Surya, Pandita, Ignaas Verpoest. Tension-tension fatigue behaviour of knitted fabric composites. Composits Structure, 2004, (64): 199-209.
DOI: 10.1016/j.compstruct.2003.08.003
Google Scholar
[9]
F Namiki, T W Chou. Tensile behavior of a quasi-isotropic carbon-carbon composite. J Am Ceram Soc, 1998, 81(1): 113-120.
DOI: 10.1111/j.1151-2916.1998.tb02302.x
Google Scholar
[10]
C Tallaron, D Rouby, P Reynaud, G Fantozzi. Improvement of cyclic fatigue analysis by the use of a tensile master curve in carbon/carbon composites. Key Eng Mater, 1999, 164-165: 329-332.
DOI: 10.4028/www.scientific.net/kem.164-165.329
Google Scholar
[11]
Yasuhiro Tanabe, Takuya Yoshimura, et al. Fatigue of C/C composites in bending and shear modes. Carbon, 2004, (42): 1-6.
Google Scholar
[12]
A Ozturk, R E Moore. Tensile fatigue behavior of tightly woven carbon-carbon composites. Composites, 1992, 23: 39-46.
DOI: 10.1016/0010-4361(92)90284-2
Google Scholar
[14]
O Siron, J Lamon. Damage and failure mechanisms of a 3D carbon/carbon composite under uniaxial tensile and shear loads. Acta Mater, 1998, 46(18): 6631-6643.
DOI: 10.1016/s1359-6454(98)00269-9
Google Scholar
[15]
Xiao-Ling Liao, He-Jun Li, Ke-Zhi Li, Qian-Gang Fu. Effects of tensile fatigue cycle on the flexural strength of 3-D C/C composites, Carbon2005, Gyeongju, Korea, 2005. 7.
Google Scholar
[16]
Zhang Meizhong, Li Hejun, Li Kezhi. Progressing in the study on mechanical properties of 3D composites. Materials Engineering, 2004, 2: 44-48.
Google Scholar