期刊文献+

超纯铁素体不锈钢B439M 200 mm×1260 mm连铸板坯中TiN夹杂物的分布 被引量:7

Distribution of TiN Inclusions in 200 mm×1260 mm Cast Slab of Ultra-Pure Ferrite Stainless Steel B439M
下载PDF
导出
摘要 采用自动扫描电镜Aspex研究了超纯铁素体不锈钢B439M(/%:0.01C,0.40Si,0.25Mn,0.020P,0.001S,17.50Cr,0.15Ni,0.20Ti,0.0080N,0.0040O)200 mm×1 260 mm连铸板坯中TiN夹杂物的分布,结果表明,由于连铸坯凝固过程中由外向内冷却速率减小,在连铸坯宽度方向边部,生成了大量小尺寸(平均1.26μm)TiN夹杂物;而在连铸坯宽度方向的1/4处和中部,由内弧表面到厚度1/4处再到厚度方向中部,TiN形核速率降低,TiN夹杂物的数量减少而尺寸增大。动力学分析结果得出,冷却速率减小会使得TiN夹杂物的生成尺寸增大,与TiN夹杂物在连铸坯中的分布规律相吻合。 The distribution of TiN inclusions in 200 mm × 1 260 mm cast slab of ultra-pure ferrite stainless steel IM39M (/% : 0. 01C, 0.40Si, 0. 25Mn, 0. 020P, 0. 001S, 17.50Cr, 0. 15Ni, 0. 20Ti, 0. 008 ON, 0.004 00) has been studied by automated scanning electro microscope Aspex. Resuhs show that due to decrease in cooling rate from surface to inside of cast slab during solidifying process, lots of small size ( average 1.26 μm ) TiN inclusions form at edge of slab width, while at 1/4 of width and center of slab, from narrow side surface to 1/4 of thickness and from 1/4 of thickness to center of thickness the TiN nucleation rate decrease, the amounts of TiN inclusions decrease and size of TiN increases. It is obtained by kinetics analysis that the size of TiN inclusion increases with decreasing cooling rate coincides well with the dis- tribution regulation of TiN inclusions in cast slab.
出处 《特殊钢》 北大核心 2016年第3期46-49,共4页 Special Steel
关键词 超纯铁素体不锈钢B439M 200 mm×1260 mm连铸板坯 TiN夹杂物 分布 动力学分析 Material Index Ultra-Pure Ferrite Stainless Steel B439M, 200 mm × x 1 260 mm Cast Slab, TiN Inclusion, Distribu-tion, Kinetics Analysis
  • 相关文献

参考文献7

  • 1游香米,姜周华,李花兵.超纯铁素体不锈钢品种和精炼技术的进展[J].特殊钢,2006,27(5):40-42. 被引量:20
  • 2翟瑞银,郑宏光,何慎,戚国平,沈继程.439铁素体不锈钢的研制[J].宝钢技术,2009,2(1):60-64. 被引量:14
  • 3成国光,朱晓霞,彭岩峰,王玉钢,赵沛.洁净钢氮化钛凝固细化技术的基础[J].北京科技大学学报,2002,24(3):273-275. 被引量:25
  • 4Bowert F,Brody H D,Flemings M C. Measurements of Solute Redis- tribution in Dendritic Solidification[J]. Transaction of the Metallur- gical Society of AIME, 1966,236 ( 5 ) :624-633.
  • 5Hideom,Toshio S,Takateru U. Numerical Analysis for Initial Stage of Rapid Solidification of l$Cr-$Ni Stainless Steel [J 1. Tetsu-to- Hagane, 1992,78 ( 5 ) : 767-773.
  • 6Clynet W, Kurz W. Solute Redistribution during Solidification with Rapid Solid State Diffusion[J]. Metallurgical Transactions A, 1981, 12(6) :965-971.
  • 7Gotoh, Miyazawa K, Yamaguchi K, et al. Effect of Cooling Rate on Oxide Precipitation during Solidification of Low Carbon Steels [J 1. ISIJ International, 1994,34 ( 5 ) :414 419.

二级参考文献9

  • 1董文卜,马力,李实,王强.B443超低碳氮铁素体不锈钢的研究[J].宝钢技术,2007(4):5-8. 被引量:12
  • 2万谷志郎 李宏(译).钢铁冶炼[M].北京:冶金工业出版社,2001..
  • 3孟繁茂,付俊岩.含铌不锈钢新产品开发.2004年全国不锈钢年会报告,2004:9
  • 4付俊岩,孟繁茂.现代含铌不锈钢.北京:冶金工业出版社,2004
  • 5Tsuda M, Yamaguchi H, Kaneko K, et al. Production of Ultra Super Purity Ferritic Stainless Steel by the Powder Top Blowing Method under Reduced Pressure. Electric Furnace Conference Proceedings, 1992:259
  • 6Kishida T, Ushiyama H, Hasegawa H, et al. Development of New Stainless Steelmaking Process. Scandinavian Journal of Metallurgy,1993,22(3) :173
  • 7Katayama H, Kajioka H, lnatomi M, et al. Production of Extremely Low Carbon and Nitrogen Steel by VOD Process. Transaction ISIJ,1978,18:761
  • 8坚增运,常芳娥,马卫红,严文,杨根仓,周尧和.金属熔体的形核和过冷度[J].中国科学(E辑),2000,30(1):9-14. 被引量:14
  • 9陆钢,成国光,宋波,赵沛,王新华.超低硫钢精炼工艺[J].北京科技大学学报,2000,22(4):320-323. 被引量:15

共引文献53

同被引文献63

引证文献7

二级引证文献36

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