期刊文献+

82A钢凝固过程中TiN夹杂析出热力学和动力学 被引量:11

Thermodynamics and dynamics of TiN precipitation during solidification of steel 82A
下载PDF
导出
摘要 用热力学和动力学方法研究82A钢液凝固过程元素偏析及其对TiN夹杂析出的影响。热力学分析表明,Ti的偏析比远高于N的偏析比;凝固冷却速度从6 K/min增至600 K/min过程中,凝固冷却速度对Ti、N凝固偏析比影响不大;钢液初始Ti含量降至0.000 2%、初始氮含量为0.002%~0.004%时,在凝固末期仍有TiN夹杂析出。动力学分析表明,随着钢液凝固冷却速度的加快,凝固析出的TiN颗粒尺寸明显变小。 The segregation of titanium and nitrogen during the solidification of steel 82A and its effect on the precipitation of TiN inclusion was studied on the basis of thermodynamics.It is found that:(1) The segregation ratio of titanium is far greater than that of nitrogen;the cooling rate of 82A solidification has little effect on the segregation ratios of titanium and nitrogen when the cooling rate increases from 6K/min to 600K/min.(2) Under the current level of N content for 82A,it is totally impossible to avoid TiN inclusion precipitation during the solidification of steel 82A even if the content of titanium is reduced to 0.0002%.(3) With the increase of the cooling rate of 82A solidification,the size of TiN inclusion precipitated during solidification is significantly reduced.
出处 《武汉科技大学学报》 CAS 2010年第4期358-362,共5页 Journal of Wuhan University of Science and Technology
基金 湖北省教育厅优秀中青年科技创新团队计划(T200609)
关键词 82A钢 TiN夹杂 热力学 动力学 steel 82A TiN inclusion thermodynamics dynamics
  • 相关文献

参考文献11

  • 1Y Yamada,S Shimazu.Wire rod for higher breaking strength steel cord[J].Wire Journal International,1986(4):53-65.
  • 2Y Shinsho,T Nozaki.Influence of secondary steelmaking on occurrence of nonmetallic inclusion in high carbon steel for tire cord[J].Wire Journal International,1998(9):145-153.
  • 3铃木三千彦,胁门惠洋.ばね材料の最近动向[J].特殊鋼,1989,38 (7):12-16.
  • 4S Maeda,T Soejima,T Saito,et al.Shape control of inclusions in wire rods for high tensile tire cord by refining with synthetic slag[C] ∥Steelmaking Conference Proceedings,1989,72:379-385.
  • 5XUEZheng-liang,LIZheng-bang,ZHANGJia-wen,YANGWu,GANChao-fu,WANGYu.Theory and Practice of Oxide Inclusion Composition and Morphology Control in Spring Steel Production[J].Journal of Iron and Steel Research International,2003,10(2):38-44. 被引量:5
  • 6Ohnaka I.Mathematical analysis of solute redistribution during solidification with diffusion in solid phase[J].Trans ISIJ,1986,26(12):1 045-1 051.
  • 7程鸣涛,倪满森,唐仲和.水平连铸圆坯二冷区凝固传热数学模型及其验证[J].钢铁研究学报,1993,5(S1):26-31. 被引量:1
  • 8曲英.炼钢学原理[M].北京:冶金工业出版社,1983.87-103.
  • 9刘庆国.钢锭凝固过程中气泡生成条件的分析[J].钢铁,1981,16(2):13-13.
  • 10B·A·格里古良.炼钢过程的物理化学计算[M].曲英,译.北京:冶金工业出版社,1993.

二级参考文献8

  • 1Murakami Y Eudo M.Effects of Hardness and Crack Geom-etries on ΔKth of Small Cracks [J].J Soc Mater Sci Japan,1986,35:911-917.
  • 2周德光,钢铁,1999年,34卷,增刊,586页
  • 3刘嘉禾,钒钛铌等微合金化元素在低合金钢中的基础研究,1992年,254页
  • 4黄希祜,钢铁冶金原理,1990年,138页
  • 5Bale G W,Metall Trans A,1989年,20卷,1371页
  • 6Liu W J,Metall Trans A,1989年,20卷,1907页
  • 7陈家祥,炼钢常用图表数据手册,1984年,567页
  • 8涨德堂,钢中非金属夹杂物图谱,1980年,106页

共引文献140

同被引文献96

引证文献11

二级引证文献51

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