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Effects of continuous casting mould fluxes on reducing longitudinal and star cracks on a slab surface 被引量:1

Effects of continuous casting mould fluxes on reducing longitudinal and star cracks on a slab surface
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摘要 In the continuous casting production of medium carbon steel (whose mass fraction of carbon is 0.09 % to 0.16 %) and high strength low alloy steel (whose mass fraction of Mn is 0.90 % to 1.40 %), flecks occurring the most often are usually longitudinal and star cracks. In additional to the employment of a galvanized plate mould, two kinds of fluxes with special properties were studied and used to harmonize the conflicts between the function of heat transfer and lubrication. An industrial application revealed that the crystallizing temperature (Tc) and crystal ratio (R) of fluxes have a crucible effect on impeding the occurrence of above defects on a slab surface. In the case of slab section (180 to 240) mm(1000 to 1400) mm and casting speed Vc of (0.7 to 1.2) m/min, the optimized parameters of fluxes are Tc of (1170 to 1190) ℃, R of 80 % to 95 % for medium carbon steel, and Tc of (1100 to 1150) ℃, plus R of 40 % to 60 % for high strength low alloy steel. In the continuous casting production of medium carbon steel (whose mass fraction of carbon is 0.09 % to 0.16 %) and high strength low alloy steel (whose mass fraction of Mn is 0.90 % to 1.40 %), flecks occurring the most often are usually longitudinal and star cracks. In additional to the employment of a galvanized plate mould, two kinds of fluxes with special properties were studied and used to harmonize the conflicts between the function of heat transfer and lubrication. An industrial application revealed that the crystallizing temperature (Tc) and crystal ratio (R) of fluxes have a crucible effect on impeding the occurrence of above defects on a slab surface. In the case of slab section (180 to 240) mm(1000 to 1400) mm and casting speed Vc of (0.7 to 1.2) m/min, the optimized parameters of fluxes are Tc of (1170 to 1190) ℃, R of 80 % to 95 % for medium carbon steel, and Tc of (1100 to 1150) ℃, plus R of 40 % to 60 % for high strength low alloy steel.
出处 《Journal of Chongqing University》 CAS 2004年第1期65-68,共4页 重庆大学学报(英文版)
基金 theNaturalScienceFundCommitteeofChina(No.59904008)
关键词 continuous casting mould flux star crack longitudinal crack 连铸 星形断裂 纵向断裂 平板表面 中碳钢 模型通量 热通量
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参考文献9

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同被引文献8

  • 1Mills K C, Fox A B. The role of mould fluxes in continuous casting-so simple yet so complex [ J ]. ISIJ International ,2003,43 : 1479 - 1486.
  • 2Hooli P. Mould flux film between mould and steel shell [ J ]. Ironmaking & Steelmaking, 2002,29 : 293 - 296.
  • 3Mills K. Mould powders for continuous casting [ R ]. Department of Materials, Imperial College, London ,2003.
  • 4Matoba Y, Okamura K, Murakami T. Occurrence mechanism and prevention method of longitudinal surface cracks near slab comer in continuous casting [ J ]. JSME International Journal Series A, 2005,48 (3) :163 -170.
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  • 6SiyasiyaC, van Rooyen G T, Stumpf W E. Metallurgical factors that affect the strand width during continuous casting of DIN 1. 4003 stainless steel[ J]. The Journal of the South African Institute of Mining and Metallurgy,2005,105:473 -482.
  • 7Cramb A W, Rastogi R, Nozzle clogging [ R]. AISI Steel Foundation, Pittsburgh,2003 : 1 - 4.
  • 8Mills K C. A simple test for the measurement of slag viscosities [ C] //5th Conference on Molten Slags, Fluxes and Salts,1997:535 - 542.

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