首页> 外文学位 >Carbon/carbon composites by forced flow-thermal gradient chemical vapor infiltration (FCVI) process.
【24h】

Carbon/carbon composites by forced flow-thermal gradient chemical vapor infiltration (FCVI) process.

机译:碳/碳复合材料通过强制流动-热梯度化学气相渗透(FCVI)工艺制备。

获取原文
获取原文并翻译 | 示例

摘要

Carbon/carbon composites are unique materials in that they combine the desirable properties of fiber-reinforced composites, such as high specific strength, stiffness, and toughness, with the refractory properties of carbon, namely, retention of strength at high temperatures in an inert atmosphere and resistance to creep and thermal shock. The applications of these materials include rocket nose cones, aircraft disk brakes, and heat shields. The commercial processing methods used to fabricate carbon composites are very slow and highly inefficient. These limitations add considerably to the cost of the components and limit the applications of this material. Consequently, there is a need to develop a process to fabricate carbon composites rapidly and economically. It has been shown that the forced flow-thermal gradient chemical vapor infiltration (FCVI) process can be used to fabricate SiC/SiC composites rapidly. However, the application of this process to carbon composites has been sparse. The present work showed that composites with porosities of only 7-9% can be fabricated within 3-14 h by FCVI process using propylene, propane, or methane as the reagent. The process was also optimized, using a statistically designed experiment for both propylene and propane. The infiltration time was reduced to 2.75 h for propylene and 7 h for propane. This is two orders of magnitude faster than the conventional CVI process, which takes 400-600 h to densify the composites. The composites fabricated in the statistical study were characterized for microstructure and tested for mechanical strength. In addition, a 1-D model was developed for the FCVI process. Finally, it was shown that the FCVI process was flexible enough to deposit a laminated matrix within a carbon preform and to protect the carbon composites internally against oxidation.
机译:碳/碳复合材料是独特的材料,因为它们将纤维增强复合材料的理想性能(例如高比强度,刚度和韧性)与碳的耐火性能(即在惰性气氛中高温下的强度保持性)结合在一起以及抗蠕变和热冲击的能力。这些材料的应用包括火箭前锥体,飞机盘式制动器和隔热罩。用于制造碳复合材料的商业加工方法非常缓慢且效率极低。这些限制大大增加了组件的成本,并限制了这种材料的应用。因此,需要开发一种快速且经济地制造碳复合材料的方法。研究表明,强制流动-热梯度化学气相渗透(FCVI)工艺可用于快速制备SiC / SiC复合材料。但是,该方法在碳复合材料上的应用很少。目前的工作表明,使用丙烯,丙烷或甲烷作为试剂,通过FCVI工艺可以在3-14小时内制造出孔隙率仅为7-9%的复合材料。还使用统计设计的丙烯和丙烷实验对工艺进行了优化。丙烯的渗透时间减少到2.75小时,丙烷的渗透时间减少到7小时。这比传统的CVI工艺要快两个数量级,后者需要400-600 h的时间才能使复合材料致密。统计研究中制造的复合材料具有微观结构特征,并测试了机械强度。此外,还为FCVI过程开发了一维模型。最后,结果表明,FCVI工艺具有足够的柔韧性,可以在碳预成型坯中沉积层压基质,并保护碳复合材料内部免受氧化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号