Laboratory Investigation of Tomography-Controlled Continuous Steel Casting

More than 96% of steel in the world is produced via the method of continuous casting. The flow condition in the mould, where the initial solidification occurs, has a significant impact on the quality of steel products. It is important to have timely, and perhaps automated, control of the flow during...

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Published inSensors (Basel, Switzerland) Vol. 22; no. 6; p. 2195
Main Authors Glavinić, Ivan, Muttakin, Imamul, Abouelazayem, Shereen, Blishchik, Artem, Stefani, Frank, Eckert, Sven, Soleimani, Manuchehr, Saidani, Iheb, Hlava, Jaroslav, Kenjereš, Saša, Wondrak, Thomas
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LanguageEnglish
Published Switzerland MDPI AG 11.03.2022
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Abstract More than 96% of steel in the world is produced via the method of continuous casting. The flow condition in the mould, where the initial solidification occurs, has a significant impact on the quality of steel products. It is important to have timely, and perhaps automated, control of the flow during casting. This work presents a new concept of using contactless inductive flow tomography (CIFT) as a sensor for a novel controller, which alters the strength of an electromagnetic brake (EMBr) of ruler type based on the reconstructed flow structure in the mould. The method was developed for the small-scale Liquid Metal Model for Continuous Casting (mini-LIMMCAST) facility available at the Helmholtz-Zentrum Dresden-Rossendorf. As an example of an undesired flow condition, clogging of the submerged entry nozzle (SEN) was modelled by partly closing one of the side ports of the SEN; in combination with an active EMBr, the jet penetrates deeper into the mould than when the EMBr is switched off. Corresponding flow patterns are detected by extracting the impingement position of the jets at the narrow faces of the mould from the CIFT reconstruction. The controller is designed to detect to undesired flow condition and switch off the EMBr. The temporal resolution of CIFT is 0.5 s.
AbstractList More than 96% of steel in the world is produced via the method of continuous casting. The flow condition in the mould, where the initial solidification occurs, has a significant impact on the quality of steel products. It is important to have timely, and perhaps automated, control of the flow during casting. This work presents a new concept of using contactless inductive flow tomography (CIFT) as a sensor for a novel controller, which alters the strength of an electromagnetic brake (EMBr) of ruler type based on the reconstructed flow structure in the mould. The method was developed for the small-scale Liquid Metal Model for Continuous Casting (mini-LIMMCAST) facility available at the Helmholtz-Zentrum Dresden-Rossendorf. As an example of an undesired flow condition, clogging of the submerged entry nozzle (SEN) was modelled by partly closing one of the side ports of the SEN; in combination with an active EMBr, the jet penetrates deeper into the mould than when the EMBr is switched off. Corresponding flow patterns are detected by extracting the impingement position of the jets at the narrow faces of the mould from the CIFT reconstruction. The controller is designed to detect to undesired flow condition and switch off the EMBr. The temporal resolution of CIFT is 0.5 s.
Author Abouelazayem, Shereen
Soleimani, Manuchehr
Kenjereš, Saša
Glavinić, Ivan
Saidani, Iheb
Stefani, Frank
Wondrak, Thomas
Eckert, Sven
Blishchik, Artem
Muttakin, Imamul
Hlava, Jaroslav
AuthorAffiliation 2 Engineering Tomography Laboratory, Department of Electronic and Electrical Engineering, University of Bath, Claverton Down, Bath BA2 7AY, UK; i.muttakin@bath.ac.uk (I.M.); ms350@bath.ac.uk (M.S.)
4 Department of Chemical Engineering, Faculty of Applied Sciences, Delft University of Technology, van der Maasweg 9, 2628 CD Delft, The Netherlands; a.blishchik@tudelft.nl (A.B.); s.kenjeres@tudelft.nl (S.K.)
1 Department of Magnetohydrodynamics, Institute of Fluid Dynamics, Helmholtz-Zentrum Dresden-Rossendorf, Bautzner Landstraße 400, 01328 Dresden, Germany; f.stefani@hzdr.de (F.S.); s.eckert@hzdr.de (S.E.); i.saidani@hzdr.de (I.S.); t.wondrak@hzdr.de (T.W.)
3 Faculty of Mechatronics, Informatics and Interdisciplinary Studies, Technical University of Liberec, Studentská 1402/2, 46117 Liberec, Czech Republic; shereen.abouelazayem@tul.cz (S.A.); jaroslav.hlava@tul.cz (J.H.)
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– name: 3 Faculty of Mechatronics, Informatics and Interdisciplinary Studies, Technical University of Liberec, Studentská 1402/2, 46117 Liberec, Czech Republic; shereen.abouelazayem@tul.cz (S.A.); jaroslav.hlava@tul.cz (J.H.)
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Keywords continuous casting
mini-LIMMCAST
clogging
EMBr
contactless inductive flow tomography
inductive measurements
flow control
Language English
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Snippet More than 96% of steel in the world is produced via the method of continuous casting. The flow condition in the mould, where the initial solidification occurs,...
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StartPage 2195
SubjectTerms clogging
contactless inductive flow tomography
Continuous casting
Control systems design
Controllers
EMBr
flow control
Flow distribution
Flow velocity
inductive measurements
Laboratories
Liquid metals
Magnetic fields
Measurement techniques
Molds
Sensors
Solidification
Temporal resolution
Tomography
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Title Laboratory Investigation of Tomography-Controlled Continuous Steel Casting
URI https://www.ncbi.nlm.nih.gov/pubmed/35336364
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Volume 22
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