Numerical modelling of fluid flows in square billet moulds, using a new nozzle orientation in the presence of an in-mould rotary electromagnetic stirrer
Author:
Affiliation:
1. McGill Metals Processing Centre (MMPC), McGill University, Montreal, Canada
2. Rio Tinto Iron & Titanium, Sorel-Tracy, QC, Canada
Funder
Rio Tinto Fer et Titane (RTFT) steel plant
ANSYS Inc
CMC Microsystems
McGill Metals Processing Centre’s (MMPC) member companie
McGill Engineering Doctoral Award (MEDA)
Publisher
Informa UK Limited
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Link
https://www.tandfonline.com/doi/pdf/10.1080/03019233.2018.1510874
Reference19 articles.
1. Control of Immersion Nozzle Outlet Flow Pattern through the Use of Swirling Flow in Continuous Casting.
2. Swirling Effect in Immersion Nozzle on Flow and Heat Transport in Billet Continuous Casting Mold.
3. Removal of Inclusion through Bubble Curtain Created by Swirl Motion in Submerged Entry Nozzle.
4. Effect of Feeding Modes of Molten Steel on the Mould Metallurgical Behavior for Round Bloom Casting
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3. A review of research on central crack in continuous casting strand;Journal of Iron and Steel Research International;2023-03-21
4. Effect of Nozzle Position on Fluid Flow and Solidification in a Billet Curved Mould using Mould Electromagnetic Stirring;steel research international;2023-01-20
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