Ye Chong, Huang Dong, Li Baoliu, Yang Pingjun, Liu Jinshui, Wu Huang, Yang Jianxiao, Li Xuanke
College of Materials Science and Engineering, Hunan Province Key Laboratory for Advanced Carbon Materials and Applied Technology, Hunan University, Changsha 410082, China.
Hunan Province Engineering Research Center for High Performance Pitch Based Carbon Fiber, Hunan Toyi Carbon Material Technology Co., Ltd., Changsha 410000, China.
Materials (Basel). 2019 Aug 25;12(17):2723. doi: 10.3390/ma12172723.
This study is focused on a novel high-thermal-conductive C/C composite used in heat-redistribution thermal protection systems. The 3D mesophase pitch-based carbon fiber (CF) preform was prepared using CF in the X (Y) direction and polyacrylonitrile carbon fiber (CF) in the Z direction. After the preform was densified by chemical vapor infiltration (CVI) and polymer infiltration and pyrolysis (PIP), the 3D high-thermal-conductive C/C (C/C) composite was obtained. The prepared C/C composite has higher thermal conduction in the X and Y directions. After an ablation test, the CF becomes needle-shaped, while the CF shows a wedge shape. The fiber/matrix and matrix/matrix interfaces are preferentially oxidized and damaged during ablation. After being coated by SiC coating, the thermal conductivity plays a significant role in decreasing the hot-side temperature and protecting the SiC coating from erosion by flame. The SiC-coated C/C composite has better ablation resistance than the SiC-coated C/C composite. The mass ablation rate of the sample is 0.19 mg·(cm·s), and the linear ablation rate is 0.52 μm·s.
本研究聚焦于一种用于热再分配热防护系统的新型高导热C/C复合材料。采用X(Y)方向的碳纤维(CF)和Z方向的聚丙烯腈碳纤维(CF)制备了三维中间相沥青基碳纤维(CF)预制体。通过化学气相渗透(CVI)和聚合物浸渍与热解(PIP)对预制体进行致密化处理后,得到了三维高导热C/C(C/C)复合材料。所制备的C/C复合材料在X和Y方向具有较高的热导率。经过烧蚀试验后,CF变为针状,而CF呈现楔形。在烧蚀过程中,纤维/基体和基体/基体界面优先被氧化和破坏。在涂覆SiC涂层后,热导率在降低热端温度以及保护SiC涂层免受火焰侵蚀方面发挥着重要作用。涂覆SiC的C/C复合材料比涂覆SiC的C/C复合材料具有更好的抗烧蚀性能。样品的质量烧蚀率为0.19 mg·(cm·s),线性烧蚀率为0.52 μm·s。