Author:
Tkadlečková M.,Válek L.,Socha L.,Saternus M.,Pieprzyca J.,Merder T.,Michalek K.,Kováč M.
Abstract
The paper is dedicated to the verification of solidification of continuously cast round steel billets using numerical modelling based on the finite element method. The aim of numerical modelling is to optimize the production of continuously cast steel billets of round format. The paper describes the pre-processing, processing and post-processing phases of numerical modelling. Also, the problems with determination of the thermodynamic properties of materials and the heat transfer between the individual parts of the casting system, including the definition of the heat losses along the casting strand in the primary and secondary cooling, were discussed. The first results of numerical simulation show the so-called thermal steady state of continuous casting. The temperature field, the metallurgical length and the thickness of the shell at the end of the mould were predicted. The further research will be concentrated on the prediction the risk of the cracks and the porosity based on the different boundary conditions.
Reference12 articles.
1. ryc;Michalek;Mater Tehnol,2013
2. The Influence of Thermal Stresses and Strand Bending on Surface Defects Formation in Continuously Cast Strands
3. onzalez oldschmit ernández;Assanelli;Metall Mater Trans B,2003
4. and Engineering of Casting Solidification New York Springer;Stefanescu;Science,2009
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