5–7 Oct 2021 Virtual Conference
Virtual Conference
Europe/Vienna timezone

Melting Kinetics of Metallic Particles in a Bottom Stirred Ladle during the Tapping Operation of Liquid Steel from the Furnace to the Ladle

6 Oct 2021, 13:00
15m
Room 1

Room 1

Oral Presentation Liquid metals, flow mechanics T_4 Ladle metallurgy and steel refining

Speaker

Prof. Rodolfo Morales (Instituto Politecnico Nacional)

Description

Molten steel is alloyed during tapping from the melting furnace to the argon-bottom stirred ladle. The metallic additions thrown to the ladle during the ladle filling time are at room temperature. The melting rates or kinetics of sinking-metals, like nickel, are simulated through a multiphase Euler-Lagrangian mathematical model during this operation, carrying out a previous assessment of the most relevant correlations for the estimation of the heat transfer coefficient. The melting rate of a metallic particle depends on its trajectory within regions of the melt with high or low turbulence levels, delaying or speeding up their melting process. At low steel levels in the ladle, the melting rates are higher on the opposite side of the plume zone induced by the bottom gas stirring. This effect is due to its deviation after the impact of the impinging jet on the ladle bottom. The higher melting kinetics are located on both sides at high steel levels due to the more extensive recirculation flows formed in taller baths. Making the additions above the eye of the argon plume spout increases the melting rate of nickel particles. The increase of the superheat makes the heat flux more significant from the melt to the particle, increasing its melting rate. At higher superheats, the melting kinetics becomes less dependent on the fluid dynamics of the melt.

Author

Prof. Rodolfo Morales (Instituto Politecnico Nacional)

Co-authors

Dr Alfonso Najer-Bastida (Instituto Politecnico Nacional) Mr Carlos Muniz (Universidad Autonoma de Coahuila) Dr Jafeth Rodriguez (Universidad Aut[onoma de Coahuila) Prof. Kinnor Chattopadhyay (University of Toronto)

Presentation materials

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