期刊文献+

Effects of Ni catalyzer on growth velocity and morphology of SiC nano-fibers 被引量:2

Effects of Ni catalyzer on growth velocity and morphology of SiC nano-fibers
下载PDF
导出
摘要 Composite felts reinforced by both SiC nano-fibers(SiC-NFs)and carbon fibers were prepared at 1 273 K using Ni granules as catalyzers with different deposition time.SiC-NFs were deposited on the surface of the carbon fibers in situ by catalytic chemical vapor deposition(CCVD).The phase,microstructure and morphology of the fibers after electroplating and deposition were characterized by XRD,SEM and TEM.The results show that the SiC-NFs produced by CCVD are composed of single crystal of β-SiC.It is found that smaller nano-granules are more active as catalyzers.The resulting SiC-NFs appear more spindle-like and have a more homogeneous dispersion.The mass change of the samples before and after deposition shows that using more Ni granules results in a faster growth velocity of SiC-NFs.With the same electroplating time,the growth velocity of the SiC-NFs first increases and then decreases.At around 4 h,it reaches the maximum growth velocity,and it becomes nearly constant at around 8 h.After 8 h, the stable growth velocity of the electroplated Ni samples is faster than that of the conventional sample produced without catalyzers, because the SiC-NFs can improve the specific surface area and the activity of the surface. Composite felts reinforced by both SiC nano-fibers (SiC-NFs) and carbon fibers were prepared at 1 273 K using Ni granules as catalyzers with different deposition time. SiC-NFs were deposited on the surface of the carbon fibers in situ by catalytic chemical vapor deposition(CCVD). The phase, microstructure and morphology of the fibers after electroplating and deposition were characterized by XRD, SEM and TEM. The results show that the SiC-NFs produced by CCVD are composed of single crystal of β-SIC. It is found that smaller nano-granules are more active as catalyzers. The resulting SiC-NFs appear more spindle-like and have a more homogeneous dispersion. The mass change of the samples before and after deposition shows that using more Ni granules results in a faster growth velocity of SiC-NFs. With the same electroplating time, the growth velocity of the SiC-NFs first increases and then decreases. At around 4 h, it reaches the maximum growth velocity, and it becomes nearly constant at around 8 h. After 8 h, the stable growth velocity of the electroplated Ni samples is faster than that of the conventional sample produced without catalyzers, because the SiC-NFs can improve the specific surface area and the activity of the surface.
出处 《中国有色金属学会会刊:英文版》 EI CSCD 2009年第5期1146-1150,共5页 Transactions of Nonferrous Metals Society of China
基金 Project(2006CB600904)supported by the National Basic Research Program of China
关键词 碳纤维增强 镍催化剂 生长速度 纳米纤维 SIC 催化化学气相沉积 心脑血管疾病 沉积时间 SiC nano-fibers carbon fiber CCVD growth velocity morphology
  • 相关文献

参考文献1

二级参考文献10

  • 1吴艳军,张亚非,杨忠学,吴建生.碳纤维无催化剂法制备β-SiC纳米晶须[J].无机材料学报,2005,20(3):740-744. 被引量:9
  • 2陈建军,潘颐,林晶.硅气氛中PAN碳纤维原位生长碳化硅纳米纤维[J].高科技纤维与应用,2006,31(3):11-14. 被引量:1
  • 3贺福.碳纤维及其复合材料[M].北京:科学出版社,2004.202
  • 4Miller A G,Donald T L,James C S.[J].Composite Structures,1994,27(1-2):193-206.
  • 5Dikonimos M T,Giorgi R,Lisi N,et al.[J].Nanotubes Carbon Nanostruct,2005,13:383-392.
  • 6Riccardis M F D,Carbone d,Dikonimos M T,et al.[J].Carbon,2006,44:671-674.
  • 7Motojjima S,Yang S M,Chen X Q.[J].Materials Research Bulletin,2000,35(2):203-209.
  • 8Powder Diffraction Data.[S].JCPDS Card,1992.29-1129.
  • 9Yang R T,Chen J P.[J].Journal of catalysts,1989,115:52-56.
  • 10Motojjima S,Hasegawa I,Asakura S,et al.[J].Carbon,1995,33:1167.

共引文献5

同被引文献21

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部