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Thermodynamic Analysis of Ti3O5Nanoparticles Formed in Melt and Their Effects on Ferritic Steel Microstructure

机译:熔体中形成的Ti3O5纳米粒子的热力学分析及其对铁素体钢组织的影响

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摘要

Based on the Wagner’s formalism combined with mass conservation, a thermodynamic analysis method has been developed previously. This method enables the calculation of the equilibrium matrix composition, precipitate composition and precipitate total molar fraction for TixOy(s) in molten metal, which can be determined at any appropriate temperature. In this present study, the Ti3O5 phase precipitation and the quantitative relationship between the addition of Ti, O and Ti3O5 in the molten steel were studied using the thermodynamic model. Using the combined multipoint dispersion supply method, electromagnetic stirring and well-dispersed 5-nm Ti3O5 nanoparticles were fabricated in the ferrite matrix of the as-cast high-strength steel with 0.05 wt % Ti—0.002 wt % O. The as-cast microstructure was improved by the homogeneously dispersed Ti3O5 nanoparticles through heterogeneous nucleation and grain refinement.
机译:基于Wagner的形式主义与质量守恒相结合,以前已经开发了一种热力学分析方法。该方法能够计算出熔融金属中TixOy的平衡基体组成,沉淀物组成和沉淀物总摩尔分数,可以在任何合适的温度下确定。在本研究中,使用热力学模型研究了Ti3O5相的析出以及钢水中Ti,O和Ti3O5的添加之间的定量关系。使用组合的多点分散供应方法,在铸态的高强度钢中,Ti含量为0.05%(重量)-0.002%(重量),在电磁场中制备了电磁搅拌和均匀分散的5nm Ti3O5纳米颗粒。铸态的显微组织通过不均匀成核和晶粒细化,将Ti3O5纳米颗粒均匀分散,改善了材料的性能。

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