超短气体滞留时间制备C/C复合材料及其组织研究

和永岗, 李克智, 魏建锋, 郭领军, 李贺军, 张磊磊

材料工程 ›› 2009, Vol. 0 ›› Issue (9) : 33-37.

PDF(1104 KB)
PDF(1104 KB)
材料工程 ›› 2009, Vol. 0 ›› Issue (9) : 33-37.
工艺

超短气体滞留时间制备C/C复合材料及其组织研究

  • 和永岗, 李克智, 魏建锋, 郭领军, 李贺军, 张磊磊
作者信息 +

Microstructure and Fabrication of C/C Composites at Super-short Gas Residence Time

  • HE Yong-gang, LI Ke-zhi, WEI Jian-feng, GUO Ling-jun, LI He-jun, ZHANG Lei-lei
Author information +
文章历史 +

摘要

以2D针刺炭毡为预制体,天然气为炭源前驱体,无稀释气体,绝对压力为10kPa,沉积温度为1100℃的工艺条件下,通过新型等温化学气相沉积工艺(ICVI),控制气体滞留时间分别为0.01,0.02,0.03s。研究在此超短气体滞留时间下C/C复合材料的致密化过程及密度分布,并采用偏光显微镜(PLM),扫描电子显微镜(SEM)观察其微观组织结构形貌。结果表明:在0.01s的气体滞留时间下,150h的渗透时间内可以制备出表观密度达到1.75g/cm3以上,密度呈现内高外低特点的C/C复合材料,其组织结构为中织构(MT)和高织构(HT)的双层织构,MT只在纤维表面存在且厚度小于2μm,其他均为HT组织。

Abstract

The infiltration of 2D-needle bundle fiber preforms was studied by the novel isothermal chemical vapor infiltration technique(ICVI),natural gas as the carbon source gas,no diluent gas,at 1100℃ and absolute pressure 10kPa with gas residence time of 0.01,0.02,0.03s,respectively.The densification rules were analyzed by densification rate and radial-direction density distribution with different residence time.The textures of samples were observed by polarized light microscopy(PLM) and scanning electron microscopy(SEM).The results show that 2D preform can be densified from inside to outside at 1100℃ for 150h,with gas residence time 0.01s,the C/C composites have a higher bulk density of 1.75g/cm3.Simultaneously,the micrographs show that the double-layer textures of the pyrocarbon change from medium-textured(MT) to high-textured(HT),only lower 2μm thickness MT on the fiber surface.

关键词

化学气相渗透 / C/C复合材料 / 滞留时间 / 致密化

Key words

chemical vapor infiltration / C/C composite / residence time / densification

引用本文

导出引用
和永岗, 李克智, 魏建锋, 郭领军, 李贺军, 张磊磊. 超短气体滞留时间制备C/C复合材料及其组织研究[J]. 材料工程, 2009, 0(9): 33-37
HE Yong-gang, LI Ke-zhi, WEI Jian-feng, GUO Ling-jun, LI He-jun, ZHANG Lei-lei. Microstructure and Fabrication of C/C Composites at Super-short Gas Residence Time[J]. Journal of Materials Engineering, 2009, 0(9): 33-37
中图分类号: TB332   

参考文献

[1] 李贺军.炭/炭复合材料[J].新型炭材料,2001,16(2):79-80.
[2] GOLECKI I.Rapid vapor-phase densification of refractory composites[J].Materials Science and Engineering,1997,20(2):37-124.
[3] DELHAES P.Chemical vapor deposition and infiltration processes of carbon materials[J].Carbon,2002,40(5):641-657.
[4] BENZINGER W,H(U)TTINGER K J.Chemical vapor infiltration of pyrocarbon-II the influence of increasing methane partial pressure at constant total pressure on infiltration rate and degree of pore filling[J].Carbon,1998,36(7-8):1033-1042.
[5] BENZINGER W,H(U)TTINGER K J.Chemical vapor infiltration of pyrocarbon-III the influence of increasing methane partial pressure at increasing total pressure on infiltration rate and degree of pore filling[J].Carbon,1998,37 (2):181-193.
[6] HU Z J,SCHOCH G,H(U)TTINGER K J.Chemistry and kinetics of chemical vapor infiltration of pyrocarbon:VII:infiltration of capillaries of equal size[J].Carbon,2000,38(7):1059-1065.
[7] ZHANG W G,HU Z J,H(U)TTINGER K J.Chemical vapor infiltration of carbon fiber felt:optimization of densification and carbon microstructure[J].Carbon,2002,40(7):2529-2545.
[8] ZHANG W G,H(U)TTINGER K J.Densification of a 2D carbon fiber preform by isothermal,isobaric CVI:kinetics and carbon microstructure[J].Carbon,2003,41(12):2325-2337.
[9] XU Guo-zhong,LI He-jun,BAI Rui-cheng,et al.Influence of the matrix texture on the fracture behavior of 2D carbon/carbon composites[J].Materials Science and Engineering A,2008,478(1-2):319-323.
[10] 徐国忠,李贺军,刘皓,等.改进ICVI工艺制备C/C复合材料的基体织构研究[J].无机材料学报,2008,23(1):175-179.

基金

国家“973”资助项目(2006CB600908);高等学校学科创新引智计划资助项目(B08040)
PDF(1104 KB)

730

Accesses

0

Citation

Detail

段落导航
相关文章

/