Affiliation:
1. School of Metallurgy, Northeastern University, Shenyang 110819, China
2. State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China
Abstract
In the process of electroslag remelting (ESR) for large-sized slab ingots, controlling the surface quality of the slab ingot is challenging due to its relatively high width-to-thickness ratio. In this study, a three-dimensional dynamic mathematical model for single-electrode ESR slab ingots was developed using dynamic mesh technology, with the aid of the commercial software FLUENT. The model is based on the electromagnetic field equation, flow field equation, and energy equation. A detailed analysis of various physical fields and the distribution law of the metal pool shape was conducted. According to the calculation results, the maximum flow velocity of the molten slag was found below the consumable electrode, with the range of maximum velocity at different time points varying between 4.35 × 10−2 and 4.88 × 10−2 m/s. The range of the maximum temperature for the slag bath at different time points was between 2118 and 2122 K. As the remelting continued, the impact of the forced cooling of the bottom plate on the temperature of the metal pool weakened. Consequently, the temperature gradient of the electroslag ingot gradually decreased, the depth of the metal pool increased, and the height of the metal liquid head in the metal pool rose. The effects of different voltages, filling ratios, and mold chamfers on the shape of the metal pool were investigated using the established mathematical model. Based on the research findings from the mathematical model, the technical processes for ESR J80 large-sized slab ingots were improved, providing solutions to improve the surface quality of the ESR large-sized slab ingots.
Funder
National Natural Science Foundations of China
Basic Scientific Research Projects in Chinese Universities
Subject
Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering
Reference23 articles.
1. Development of a new generation of electroslag metallurgy technology;Jiang;J. Mater. Metall.,2011
2. Internal quality control of electroslag remelting large slab;Jiang;J. Adv. Superalloys,2011
3. A dynamic mesh-based approach to model melting and shape of an ESR electrode;Metall. Mater. Trans. B,2015
4. Wang, Q., Rong, W.J., and Wang, F. (2015, January 20–24). Numerical investigation of electromagnetism and heat transfer in electroslag remelting process with triple-electrode. Proceedings of the 2015 International Symposium on Liquid Metal Processing & Casting, Leoben, Austria.
5. Numerical Investigation on Solidification Shrinkage Behavior of P900 Hollow Ingot during Electroslag Remelting Process;Liu;Steel Res. Int.,2022