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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Materials Processing Fundamentals: Iron and Steel Production
Presentation Title Study on the Phase Transformation Mechanism of Continuous Casting Mold Flux Controlled by Electric Pulse
Author(s) Xianzheng Si, Wanlin Wang, Lejun Zhou
On-Site Speaker (Planned) Xianzheng Si
Abstract Scope Electropulsing treatment is a promising technology for controlling the phase transition during the solidification of melts owing to its electric and thermal effects. In this study, the influence of EPT on the crystallization properties and melt structure of a calcium silicate-based mold flux was investigated. The results shown that: after electro-pulsing treatment, the precipitated grains are transformed from fine to massive, and the overall crystallinity increases obviously. Besides, the precipitation content of Alumoakermanite increases, while that of Cuspidine decreases. With rise of pulse widths, the precipitated phase gradually changed into massive, and the average grain size increased, but effect on the precipitated phase content was not obvious. The addition of electro-pulsing has an additional contribution ΔGE to crystal nucleation, influencing the free energy of nucleation. The precipitated phase is controlled by diffusion reaction when the melt is not treated by electro-pulsing, while controlled by interface reaction by electro-pulsing.
Proceedings Inclusion? Planned:
Keywords Phase Transformations, Iron and Steel, Extraction and Processing

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A Novel Electrode Model for Søderberg Electrodes
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Analysis of the Causes of Drilling Cracks in Free-cutting Silver Bright Rods
Chromium-Nickel-Molybdenum Ferroalloys for Stainless Steel Production via Sulfide Chemistry
Density Functional Theory (DFT)Simulation of Micro Surface Properties of FeO
Effect of Heating Rate on the Production of Iron Nugget from Off-grade Iron Ore Fines
Effect of Super-gravity Field on the Purification and Solidification Structure of Oxygen Free Copper (OFC)
Influence of High Magnetic Fields on Diffusion of C in Fe for Energy-efficient Processing of Steel
Influence of TiO2 and V2O3 on the Viscosity and Flow Behaviour of Iron Making Slag
Low Carbon Smelting Practice of Large Blast Furnaces by Using of High Pellet Ratio
Modification and Evaluation of Desulfurization and Denitrification of 360m2 Sintering Machine in Shougang Qian’an Company
Numerical Simulation of Slag-iron Flow in Simple Coke Bed
Optimization of Submerged Nozzle and Chamfer Design in the Mold of Bloom Continuous Casting Process Using Numerical Simulation
Production of Soft Magnetic Composites Using Cold Sintering Technique for Metals
Removing the Inclusions in Four-strand Asymmetrical Tundish by Using a Crutch-shaped Baffle
Research and Practice on the Technology of Ultra-thick Bed Sintering of Iron Ore in Shougang Jingtang Sintering Plant
Simulation on the Melting Behavior of Steel Scrap in a Converter with Top-bottom Combined Blowing
Study on the Key Technology of Preparing Vanadium Base Alloy for Nuclear Power
Study on the Phase Transformation Mechanism of Continuous Casting Mold Flux Controlled by Electric Pulse
The Behavior of Fine Dust from Materials Processing under the Acoustic Field
Thermodynamic Properties of Sulfur in the CaO-AlO1.5-LaO1.5-CeO1.5 System
Thermodynamic Properties of Zn-Al-Mg-, Mg-Al- and Al-Si-based Eutectic Alloys for Latent Heat Storage
Utilizing Hybrid Hot-Wire Laser DED to Repair Fractured Surfaces of H-13 Tool Steel

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