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PIP工艺制备2D C/SiC复合材料Z-向穿刺工艺 被引量:1

Z-pin Process Investigation of 2D C/SiC Composites via Precursor Infiltration and Pyrolysis
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摘要 针对2DC/SiC复合材料存在碳布层间缺乏纤维增强,层间结合较差的问题,提出通过Z-向穿刺工艺提高碳布层间结合,克服材料使用时可靠性不高的问题,并比较了穿刺工艺对复合材料微观结构和力学性能的影响。结果表明,通过Z-向穿刺工艺制得试样2DC/SiC-Zpin的弯曲强度、弯曲模量和剪切强度分别为247.8MPa、37.8GPa和32.1MPa,而未穿刺试样2DC/SiC的弯曲强度、弯曲模量和剪切强度分别只有219.3MPa、34.4GPa和23.3MPa,由此可见,采用Z-向穿刺工艺能明显提高复合材料的力学性能。微观结构分析认为,试样力学性能提高的根本原因在于采用Z-向穿刺纤维加强了碳布层间结合,使材料具有较好的整体性,克服了复合材料层间结合较弱对力学性能带来的不利影响。 In order to improve the poor laminar shear strength of 2D C/SiC composites without in-depth carbon fiber reinforcement, a novel proposal to increase shear strength by introducing Z-pin carbon fiber was presented, and accordingly effect of Z-pin process on the microstructure and mechanical properties of C/SiC-Zpin was investigated. The results show that the flexural strength, flexural modulus and shear strength of 2D C/SiC-Zpin composites were 247.8 MPa, 37.8 GPa and 32.1 MPa, respectively, while those of 2D C/SiC composites without Z-pin fiber reinforcement were 219.3 MPa, 34.4 GPa, and 23.3 MPa, respectively, leading to the conclusion that that Z-pin process enhances significantly the laminar shear strength of the composites. Further analysis of microstructure of the composites gives that the improvement of mechanical properties is ascribed to the strong laminar joining of carbon cloths after Z-pin fiber introduction, getting better integration of the composites and structure.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第A02期419-422,共4页 Rare Metal Materials and Engineering
基金 国防预先研究项目
关键词 2D C/SIC Z-向穿刺 微观结构 力学性能 2D C/SiC Z-pin microstructure mechanical property
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参考文献5

  • 1Beyer S, Knabe H, Strobel H. Development and Testing of C/SiC Composites for Liquid Rocket Propulsion Applications[R]. ALAA, 99-2896.
  • 2Zheng G B, Sano H, Uchiyama Y et al. J Mater Sci[J], 1999, 34:827.
  • 3Jian K, Chen Z H, Ma Q S et al. Ceramics International[J], 2007, 33:73.
  • 4李辉,张立同,曾庆丰,徐永东,成来飞,董宁,吴守军.2D C/SiC复合材料的可靠性评价[J].复合材料学报,2007,24(4):95-100. 被引量:18
  • 5Testing Method for Flexural Strength of High Performance Ceramics. Chinese GB 6569-86[S], 1986.

二级参考文献14

  • 1吴守军,成来飞,董宁,张立同,徐永东.3D Hi-Nicalon/SiC复合材料室温三点弯曲强度分布[J].复合材料学报,2005,22(5):130-133. 被引量:9
  • 2李世普.特种陶瓷工艺学[M].武汉:武汉理工大学出版社,2003.
  • 3钟群鹏,金星,洪延姬等.断裂失效的概率分析和评估基础[M].北京:北京航空航天大学出版社,1999
  • 4Xu Yongdong,Cheng Laifei,Zhang Litong,Yan Dantao,You Chang.Optimization of sample number for Weibull function of brittle materials strength[J].Ceramics International,2001,27(2):239-241.
  • 5Antón N,Velasco F,Gordo E,Torralba J M.Statistical approach to mechanical behavior of ceramic matrix composites based on Portland clinker[J].Ceramics International,2001,27(4):391-399.
  • 6Araki H,Yang W,Suzuki H,Hu Q,Busabok C,Noda T.Fabrication and flexural properties of Tyranno-SA/SiC composites with carbon interlayer by CVI[J].Journal of Nuclear Materials,2004,329/333(1):567-571.
  • 7郑修麟.材料的力学性能[M].第2版.西安:西北工业大学出版社,2002:186-189.
  • 8Calard V,Lamon J.A probabilistic-statistical approach to the ultimate failure of ceramic-matrix composites Ⅰ:Experimental investigation of 2D woven SiC/SiC composites[J].Composites Science and Technology,2002,62(3):385-393.
  • 9Calard V,Lamon J.A probabilistic-statistical approach to the ultimate failure of ceramic-matrix composites Ⅱ:Macroscopic model[J].Composites Science and Technology,2002,62(3):395-399.
  • 10师昌绪,钟群鹏,李成功.中国材料工程大典·材料工程基础[M].北京:化学工业出版社,2005:827-881.

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