Modeling and Numerical Simulation of Material Science

Modeling and Numerical Simulation of Material Science

ISSN Print: 2164-5345
ISSN Online: 2164-5353
www.scirp.net/journal/mnsms
E-mail: [email protected]
"Numerical Simulation of Decarburization in a Top-Blown Basic Oxygen Furnace"
written by Miguel A. Barron, Dulce Y. Medina, Isaias Hilerio,
published by Modeling and Numerical Simulation of Material Science, Vol.4 No.3, 2014
has been cited by the following article(s):
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[1] Refining at the impact and emulsion zones of basic oxygen steel making process–a fundamental study
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[2] Gas–Liquid Cavity Shape in a Kaldo Furnace by Water Model Experimentation and Dimensional Analysis
JOM, 2023
[3] Insights Thermodynamic in Basic Oxygen Steel Making Process
ISIJ International, 2023
[4] Contribution of Hot-Spot Zone in Decarburization of BOF Steel-Making: Fundamental Analysis Based upon the FactSage-Macro Program
Metals, 2022
[5] CO Desorption and Absorption in Molten Steel: A Review
2021
[6] Predicción de la temperatura del arrabio en la acería y evaluación de su impacto en las emisiones de CO2 mediante el desarrollo conjunto de procesos y modelos
2020
[7] Carbon prediction model for basic oxygen furnace off-gas analysis based on bath mixing degree
hui, CAO Ling-ling, LIU Qing… - 工程科学 …, 2018
[8] Model for Phosphorus Removal in LD Converter and Design of a Valuable Operative Practice
steel research international, 2018
[9] DESIGN AND MODELLING OF FINAL STEEL DECARBURATION PROCEDURE THROUGH SELF-BUBBLING EFFECT
Proceeding of 8th …, 2018
[10] 基于熔池混匀度的转炉烟气分析定碳模型
2018
[11] Thermal and chemical analysis of massive use of hot briquetted iron inside basic oxygen furnace
Journal of Iron and Steel Research, International, 2017
[12] Model for the final decarburisation of the steel bath through a self-bubbling effect
American Journal of Sexuality Education, 2017
[13] Thermodynamische und kinetische Modellierung von LD-Konvertern
2017
[14] Řízení chemického ohřevu během sekundárního zpracování oceli
2015
[15] ?íZENí CHEMICKéHO OH?EVU BěHEM SEKUNDáRNíHO ZPRACOVáNí OCELI
2015
[16] Možnosti využití chemického ohřevu během sekundárního zpracování oceli
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[17] Datos generales
Trabajo, 1991
[18] ŘÍZENÍ CHEMICKÉHO OHŘEVU BĚHEM SEKUNDÁRNÍHO
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