期刊文献+

Influence of Solid Fraction on Structure of QTi3.5-15/Graghite Slurry

Influence of Solid Fraction on Structure of QTi3.5-15/Graghite Slurry
下载PDF
导出
摘要 The electromagnetic-mechanical stirring technology was used to prepare QTi3.5-15/graghite slurry. The distribution of graphite particies in QTi3.5-15/graghite slurry was studied using cold quenching method. The results show that solid fraction of QTi3.5-15/graphite slurry increases with the decreasing of stirring temperature. There is a linear relationship between solid fraction and stirring temperature. With the increasing of solid fraction, the distribution of graphite particies in slurry becomes uniform gradually. When the solid fraction is larger than 45%, the rising of graphite particies in slurry can be restricted, and QTi3.5-15/graghite slurry with uniform distribution of graphite particies can be prepared. The electromagnetic-mechanical stirring technology was used to prepare QTi3.5-15/graghite slurry. The distribution of graphite particies in QTi3.5-15/graghite slurry was studied using cold quenching method. The results show that solid fraction of QTi3.5-15/graphite slurry increases with the decreasing of stirring temperature. There is a linear relationship between solid fraction and stirring temperature. With the increasing of solid fraction, the distribution of graphite particies in slurry becomes uniform gradually. When the solid fraction is larger than 45%, the rising of graphite particies in slurry can be restricted, and QTi3.5-15/graghite slurry with uniform distribution of graphite particies can be prepared.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第6期794-796,共3页 材料科学技术(英文版)
基金 This project was supported by the National Natural Science Foundation of China(No.50304001) the Beijing Jiaotong University Foundation.
关键词 Copper alloy Electromagnetic stirring COMPOSITE Graphite particles <Keyword>Copper alloy, Electromagnetic stirring, Composite, Graphite particles
  • 相关文献

参考文献13

  • 1[1]Shixian LI: Graphite, Chemical Industry Press, Beijing, 1991, 11. (in Chinese)
  • 2[2]J.Kovacik: Scripta Mater., 1996, 35(2), 151.
  • 3[3]Zhezhong WANG: Mater. Mecha. Eng., 2001, 25(10), 1. (in Chinese)
  • 4[4]P. Rohatgi: Metals Handbook, ASM International, OH, 1992, 801.
  • 5[5]Jiangsheng ZHE: The Welding of Copper and Copper Alloy, Chemical Industry Press, Beijing, 1979, 9. (in Chinese)
  • 6[6]M.L.Mackay: Metal Progress, 1997, (6), 32.
  • 7[7]Jiayuan CAI: Metallographical Atlas of Copper and CopperAlloy, Metallurgical Industry Press, Beijing, 1983, 117. (in Chinese)
  • 8[8]Peng ZHANG: J. Mater. Sci. Technol., 2000, 16(6), 577.
  • 9[9]B.B.Stuart: Adv. Mater. Proces., 1993, (1), 36.
  • 10[10]Peng ZHANG: J. Uni. Sci. Technol. Beijing, 2001, (8), 203.

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