期刊文献+

STUDY ON GRANULATION MECHANISMS OF γ+(Fe,Mn)3C EUTECTICS IN AUSTENITE STEEL COMPOSITES

STUDY ON GRANULATION MECHANISMS OF γ+(Fe,Mn)_3C EUTECTICS IN AUSTENITE STEEL COMPOSITES
下载PDF
导出
摘要 Results presented in this paper contribute to investigation of the granulation mechanisms of γ+(Fe,Mn)3C eutectics in the austenite matrix composites (abbreviated EAMC). The specimens corresponding to the nominal composition of eutectic with controlled RE(Ce)-Mg agent modifier additions have been unidirectional solidified with a constant growth rate of 2.18μm/s at a fixed temperature gradient of 800K/cm using vertical Bridgeman method. With the RE-Mg agent modifier, the transition of solid/liquid (S/L) interface from columnar to dendrite (CDT), refinement and developed branching of γ and (Fe,Mn)3C phases in the eutectics, and the transition of growth style from faceted-nonfaceted (F/NF) to nonfaceted-nonfaceted (NF/NF) for γ and (Fe,Mn)3C phases in the eutectic have been observed and investigated theoretically. Those can explain the granulation of γ+(Fe,Mn)3C eutectics in the as cast because the roundness increases with the developed lateral branching of primary austenite dendrites, refinement of eutectics, and NF/NF growth of γ and (Fe,Mn)3C phases in the eutectic. Results presented in this paper contribute to investigation of the granulation mechanisms of γ+(Fe,Mn)3C eutectics in the austenite matrix composites (abbreviated EAMC). The specimens corresponding to the nominal composition of eutectic with controlled RE(Ce)-Mg agent modifier additions have been unidirectional solidified with a constant growth rate of 2.18μm/s at a fixed temperature gradient of 800K/cm using vertical Bridgeman method. With the RE-Mg agent modifier, the transition of solid/liquid (S/L) interface from columnar to dendrite (CDT), refinement and developed branching of γ and (Fe,Mn)3C phases in the eutectics, and the transition of growth style from faceted-nonfaceted (F/NF) to nonfaceted-nonfaceted (NF/NF) for γ and (Fe,Mn)3C phases in the eutectic have been observed and investigated theoretically. Those can explain the granulation of γ+(Fe,Mn)3C eutectics in the as cast because the roundness increases with the developed lateral branching of primary austenite dendrites, refinement of eutectics, and NF/NF growth of γ and (Fe,Mn)3C phases in the eutectic.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2003年第6期449-456,共8页 金属学报(英文版)
基金 supported by the National Natural Science Foundation of China(No.50001008).
关键词 composite RE-Mg agent GRANULATION unidirectional solidifica-tion composite, RE-Mg agent, granulation, unidirectional solidifica-tion
  • 相关文献

参考文献14

  • 1Z Cai;T H Cheng;C Lu;K.R.Subramanian.查看详情,2001.
  • 2G F Liang;Z M Xu;Q C Jiang.查看详情[J],2003(02).
  • 3Z M Xu.Eutectic growth in as-cast medium manganese steel[J],2002(1-2).
  • 4S J Chu;J G Li;H Z Fu.查看详情[J],1994.
  • 5Q Guan.查看详情,1993.
  • 6M I sogama.查看详情,1974.
  • 7C Bodsworth;H B Bell.Physical Chemistry of Iron and Manufacture,1972.
  • 8G Herberg;K Nogita.Columnar to equiaxed transition of eutectic in hypoeutectic aluminium-silicon alloys[J],2002(50).
  • 9S K Wei.Thermodynamics of Metallurgy Process,1987.
  • 10Z.M. Xu.查看详情,1996.

共引文献8

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