SUI Ya-fei, SUN Guo-dong, ZHAO Yan, WANG Can-guo, GUO Min, ZHANG Mei. Evolution of titaniferous inclusions in IF steelmaking[J]. Chinese Journal of Engineering, 2014, 36(9): 1174-1182. DOI: 10.13374/j.issn1001-053x.2014.09.007
Citation: SUI Ya-fei, SUN Guo-dong, ZHAO Yan, WANG Can-guo, GUO Min, ZHANG Mei. Evolution of titaniferous inclusions in IF steelmaking[J]. Chinese Journal of Engineering, 2014, 36(9): 1174-1182. DOI: 10.13374/j.issn1001-053x.2014.09.007

Evolution of titaniferous inclusions in IF steelmaking

  • The composition, distribution and microtopography of titaniferous inclusions in Ti-IF steel during steelmaking and in the casting billets were investigated systematically, and the evolution of the titaniferous inclusions was described subsequently. Both thermodynamic analysis and experimental results indicate that TiN could not precipitate in the steelmaking process, while the titaniferous inclusions exist in the form of a combination of titanium oxides which mainly consists of TiO2 and other oxides. In the solidification process of continuous casting, TiN inclusions precipitate in the heterogeneous nucleation way due to the decrease of liquid steel temperature and the segregation effect. The main non-metallic inclusions in the casting billets are large size Al2O3 particles and TiN-Al2TiO5-Al2O3 triple-layer complex inclusions with the middle layer of Al2TiO5. The nucleation and growth process of TiN-Al2TiO5-Al2O3 complex inclusions is thatAl,Ti andN form the middle layer of Al2TiO5 firstly on the Al2O3 core surface, then TiN nucleates and grows up on the Al2TiO5 surface. Since TiN inclusions in the casting billets are difficultly removed during the steelmaking process, it is feasible to control titaniferous inclusions in the steel by inclusion modification.
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