ISSN 2594-5300
47th Steelmaking Seminar - International — vol. 47, num.47 (2016)
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The research work objective is to study a new ladle shroud internal design to reduce the slag emulsification in the tundish during ladle transient periods. A 3D mathematical model of the tundish was created to solve the fundamental equations, a turbulence model, and a multiphase model. The results show that using a conventional ladle shroud, the fluid is delivered with an excessive amount of kinetic energy being dissipated inside the tundish bath, generating strong mixing flow patterns and entrapping a massive amount of slag. In the other hand, the proposed ladle shroud dissipates the kinetic energy before the fluid enters the tundish promoting less intense mixing patterns; thus, the amount of slag emulsification is reduced significantly. Consequently, if the internal design of the ladle shroud is able to dissipate the kinetic energy before the fluid enters the tundish, it shall be possible to reduce considerable the slag emulsification and the slag opening area.
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Mathematical simulation, Slag contamination, Tundish
Tundish
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Hernandez, Saul Garcia;
Barreto, Jose de Jesus;
Morales, Rodolfo Davila;
Ramos, Ismael Calderon;
Gutierrez, Enif;
Diaz, Francisco Andres Zepeda;
Lara, Beatriz Adriana Martinez.
MATHEMATICAL SIMULATION OF THE SLAG CONTAMINATION IN A CONTINUOS CASTING TUNDISH
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p. 441-449.
In: 47th Steelmaking Seminar - International,
Rio de Janeiro,
2016.
ISSN: 2594-5300
, DOI 10.5151/1982-9345-27774