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Study on Reaction Performances and Applications of Mold Flux for High-Aluminum Steel

机译:高铝钢的保护渣反应性能及应用研究

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摘要

During the continuous ecasting of high-aluminum steel, important components of the mold flux can be easily reduced by the aluminum in the molten steel. Consequently, the mold flux performance is deteriorated, impeding the smooth running of the continuous casting and affecting the quality of the cast slab. To solve this problem, thermodynamic calculations and laboratorial crucible experiments were performed to investigate the reduction of different mold fluxes by the aluminum in molten steel. Plant trials based on the laboratory studies were performed. It was found that SiO2, MnO, Na2O and B2O3 reacted with the aluminum in molten steel, while CaO, CaF2, MgO, Li2O and BaO did not. Since the composition contents of in CaO-Al2O3-based mold flux were changed only slightly after steel/slag interfacial reactions, a stable CaO-Al(2)O(3-)based mold flux was tested in industry production. The application effect of this stable mold flux was very good.
机译:在高铝钢的连续铸造过程中,钢水中的铝很容易减少保护渣的重要成分。因此,保护​​渣性能下降,妨碍了连铸的顺畅进行,并影响了铸坯的质量。为了解决这个问题,进行了热力学计算和实验室坩埚实验,以研究铝在钢水中对不同铸型助熔剂的还原作用。进行了基于实验室研究的植物试验。结果发现,SiO2,MnO,Na2O和B2O3与钢水中的铝发生了反应,而CaO,CaF2,MgO,Li2O和BaO没有发生反应。由于在钢/矿渣界面反应后,基于CaO-Al2O3的铸模助熔剂的成分含量仅发生了微小变化,因此在工业生产中测试了稳定的基于CaO-Al(2)O(3-)的铸模助熔剂。这种稳定的保护渣的应用效果非常好。

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