Research Progress on Heat Transfer Characteristics of Mold Flux Film in Continuous Casting Mold
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Research Progress on Heat Transfer Characteristics of Mold Flux Film in Continuous Casting Mold
Special SteelVol. 42, Issue 6, Pages: 6-13(2021)
作者机构:
1. 华北理工大学 矿业工程学院,唐山,063210
2. 华北理工大学 冶金与能源学院,唐山,063210
作者简介:
基金信息:
DOI:
CLC:
Received:08 April 2021,
Online First:03 January 2022,
Published:03 January 2021
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韩秀丽, 闫晓鹏, 刘磊, et al. Research Progress on Heat Transfer Characteristics of Mold Flux Film in Continuous Casting Mold[J]. Special Steel, 2021, 42(6): 6-13.
DOI:
韩秀丽, 闫晓鹏, 刘磊, et al. Research Progress on Heat Transfer Characteristics of Mold Flux Film in Continuous Casting Mold[J]. Special Steel, 2021, 42(6): 6-13.DOI:
Research Progress on Heat Transfer Characteristics of Mold Flux Film in Continuous Casting Mold
The traditional mold flux is mainly composed of CaO and SiO
2
as the base material
supplemented by an appropriate amount of fluxing agent such as CaF
2
and the fluorine-free mold flux is to choose B
2
O
3
、TiO
2
and other suitable flux to replace CaF
2
to achieve the role of green metallurgy.In this paper
the influence laws of heat transfer of the traditional fluorine mold flux CaO-SiO
2
-CaF
2
and new fluorine-free mold flux CaO-SiO
2
-B
2
O
3
and CaO-SiO
2
-TiO
2
flux films are re- viewed from three aspects of basicity
chemical composition and crys
tallization properties of the mold flux. Summarizes the metallurgical workers in nearly a decade of fluoride and fluorine-free mold fluxs film heat transfer of research results
it is concluded that the fluorine-free mold flux silicon calcium borate and perovskite crystal mineral phases and traditional mold flux cuspidine have similar crystallization behavior
the content of B
2
O
3
and TiO
2
range from 4% to8% and 3% to 11% can effectively control the heat transfer
thereby reducing the occurrence of slab longitudinal cracks.