|
- 2016
碳/碳复合材料疲劳损伤失效试验研究
|
Abstract:
对单向碳/碳复合材料纵向拉-拉疲劳特性及面内剪切拉-拉疲劳特性进行了试验研究; 对三维四向编织碳/碳复合材料的纵向拉-拉疲劳特性及纤维束-基体界面剩余强度进行了试验研究。使用最小二乘法拟合得到了单向碳/碳复合材料纵向及面内剪切拉-拉疲劳加载下的剩余刚度退化模型及剩余强度退化模型, 建立了纤维束-基体界面剩余强度模型。结果显示: 单向碳/碳复合材料在87.5%应力水平的疲劳载荷下刚度退化最大只有8.8%左右, 在70.0%应力水平的疲劳载荷下, 面内剪切刚度退化最大可达30%左右; 三维四向编织碳/碳复合材料疲劳加载后强度及刚度均得到了提高; 随着疲劳循环加载数的增加, 三维四向编织碳/碳复合材料中纤维束-基体界面强度逐渐减弱。 The longitudinal tensile-tensile fatigue characteristics and in-plane shear tensile-tensile fatigue characteristics of unidirectional C/C composites and the longitudinal tensile-tensile fatigue characteristics of three-dimensional and four-directional braided C/C composites were researched through tests. The interface residual strength between fiber bundle and matrix was measured. The residual stiffness degradation model and the residual strength degradation model under longitudinal and in-plane shear tensile-tensile fatigue loading of unidirectional C/C composites were fitted by the least square method, and the interface residual strength model between fiber bundle and matrix was established. The results show that the biggest stiffness degradation of the unidirectional C/C composites at the fatigue load stress level of 87.5% is only about 8.8%, whereas, the biggest in-plane shear stiffness degradation goes to about 30% at the fatigue load stress level of 70.0%. The strength and stiffness of three-dimensional and four-directional braided C/C composites are both improved after fatigue loading. The interface strength between fiber bundle and matrix of the three-dimensional and four-directional braided C/C composites decrease gradually with the increase of fatigue loading cycles. 江苏省博士后基金(1302117C); 江阴市工业科技支撑计划(工35)
[1] | XUE H, LI H J, HOU X H, et al. Flexual behavior of 2D carbon-carbon composites fabricated by pressure gradient CVI[J]. New Carbon Materials, 2004, 19(4): 289-293. |
[2] | NEUMEISTER J, JANSSON S, LECKIE F. The effect of fiber architecture on the mechanical properties of carbon/carbon fiber composites[J]. Acta Materialia, 1996, 44(2): 573-585. |
[3] | GOTO K, HATTA H, KATSU D, et al. Tensile fatigue of a laminated carbon/carbon composites at room temperature[J]. Carbon, 2003, 41(6): 1249-1255. |
[4] | 韩红梅. C/C复合材料的力学性能及损伤演变研究[D]. 西安: 西北工业大学, 2002. HAN H M. Study on the mechanical properties and damage evolution of C/C composites[D]. Xi'an: Northwestern Polytechnical University, 2002 (in Chinese). |
[5] | 王丹勇, 温卫东. 复合材料单向层合板损伤失效试验研究[J]. 复合材料学报, 2007, 24(5): 142-148. WANG D Y, WEN W D. Experimental research on damage failure of unidirectional laminas[J]. Acta Materiae Compositae Sinica, 2007, 24(5): 142-148 (in Chinese). |
[6] | 廖晓玲. 三维编织C/C复合材料的疲劳行为及损伤演变研究[D]. 西安: 西北工业大学, 2006. LIAO X L. The fatigue behaviors and damage evolution of 3D braided C/C composites[D]. Xi'an: Northwestern Polytechnical University, 2006 (in Chinese). |
[7] | 李贺军. 碳/碳复合材料[J]. 新型炭材料, 2001, 16(2): 79-80. LI H J. Carbon/carbon composites[J]. New Carbon Materials, 2001, 16(2): 79-80 (in Chinese). |
[8] | TANABE Y, YOSHIMURA T, WATANABE T, et al. Fatigue of C/C composites in bending and in shear modes[J]. Carbon, 2004, 42(8): 1665-1670. |
[9] | HARRIS B, GATHERCOLE N, LEE J A, et al. Life-prediction for constant-stress fatigue in carbon-fibre composites[C]//Philosophical Transactions of the Royal Society of London. London: The Royal Society, 1997: 1259-1294. |
[10] | 王丹勇. 层合板接头损伤失效与疲劳寿命研究[D]. 南京: 南京航空航天大学, 2006. WANG D Y. Research on prediction of damage failure and fatigue life for composites bottled joints[D], Nanjing: Nanjing University of Aeronautics and Astronautics, 2006 (in Chinese). |
[11] | 沈观林, 胡更开. 复合材料力学[M]. 北京: 清华大学出版社, 2007: 57-59. SHEN G L, HU G K. Composite mechanics[M]. Beijing: Tsinghua University Press, 2007: 57-59 (in Chinese). |