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IF鋼中含Ti夾雜物的衍變規律

Evolution of titaniferous inclusions in IF steelmaking

  • 摘要: 系統研究了Ti-IF鋼冶煉過程和鑄坯中含Ti夾雜物的組成、分布與微觀形貌,揭示了含Ti夾雜物的衍變規律.熱力學分析和實驗結果表明:在IF鋼冶煉過程中無TiN生成,含Ti夾雜物的存在形式是以TiO2為主的鈦氧化物結合其他氧化物的復合夾雜:而在連鑄凝固過程中,由于鋼液溫度降低和元素的偏析作用,TiN夾雜以異質形核的方式生成.IF鋼鑄坯中非金屬夾雜物主要是大尺寸Al2O3顆粒和存在中間過渡層的TiN—Al2TiO5-Al2O3復合夾雜物,其形核長大過程是Al、Ti和O先在細小的Al2O3顆粒上反應生成一層Al2TiO5,然后TiN在Al2TiO5表面形核長大.根據連鑄過程和鑄坯中含鈦夾雜物的研究得出,Ti-IF鋼鑄坯中TiN夾雜難以去除,但是可以使其變性以實現對鋼中含鈦夾雜物的控制.

     

    Abstract: 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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