Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting

The initial solidification of the shell and the effect of the negative strip on oscillation marks were studied during the oscillation of the mold. A two-dimensional model was established concerning mold oscillation, which was coupled with fluid flow, heat transfer, and solidification, and the validi...

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Main Authors: Minghui Cao, Yuanhe Liu, Xingzhong Zhang
Format: Article
Language:English
Published: MDPI AG 2023-04-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/13/4/726
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author Minghui Cao
Yuanhe Liu
Xingzhong Zhang
author_facet Minghui Cao
Yuanhe Liu
Xingzhong Zhang
author_sort Minghui Cao
collection DOAJ
description The initial solidification of the shell and the effect of the negative strip on oscillation marks were studied during the oscillation of the mold. A two-dimensional model was established concerning mold oscillation, which was coupled with fluid flow, heat transfer, and solidification, and the validity of the model was verified. The results show that oscillation marks were formed at the negative strip stage and that the quality of the slabs can be improved by reducing the duration of the negative strip stage. During the negative strip stage, the shell was affected by the strong backflow of liquid slag and the pressure on the surface sharply increased, resulting in the formation of a depression oscillation mark on the shell. The effects of the negative strip stage on the initial solidified shell during each cycle were compared. As the depth of the oscillation mark decreased, the upward shear stress on the shell’s surface increased, without the occurrence of a negative strip stage during one cycle. The results provided a new method for reducing oscillation marks and are of great significance for improving casting slabs’ quality.
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spelling doaj.art-46b63b79dccb4a368d4be68762f49bfe2023-11-17T20:26:50ZengMDPI AGMetals2075-47012023-04-0113472610.3390/met13040726Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous CastingMinghui Cao0Yuanhe Liu1Xingzhong Zhang2National Engineering Research Centre for Equipment and Technology of Cold Rolled Strip, Yanshan University, Qinhuangdao 066004, ChinaNational Engineering Research Centre for Equipment and Technology of Cold Rolled Strip, Yanshan University, Qinhuangdao 066004, ChinaNational Engineering Research Centre for Equipment and Technology of Cold Rolled Strip, Yanshan University, Qinhuangdao 066004, ChinaThe initial solidification of the shell and the effect of the negative strip on oscillation marks were studied during the oscillation of the mold. A two-dimensional model was established concerning mold oscillation, which was coupled with fluid flow, heat transfer, and solidification, and the validity of the model was verified. The results show that oscillation marks were formed at the negative strip stage and that the quality of the slabs can be improved by reducing the duration of the negative strip stage. During the negative strip stage, the shell was affected by the strong backflow of liquid slag and the pressure on the surface sharply increased, resulting in the formation of a depression oscillation mark on the shell. The effects of the negative strip stage on the initial solidified shell during each cycle were compared. As the depth of the oscillation mark decreased, the upward shear stress on the shell’s surface increased, without the occurrence of a negative strip stage during one cycle. The results provided a new method for reducing oscillation marks and are of great significance for improving casting slabs’ quality.https://www.mdpi.com/2075-4701/13/4/726negative strip timeinitial solidificationoscillation markscontinuous casting mold
spellingShingle Minghui Cao
Yuanhe Liu
Xingzhong Zhang
Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
Metals
negative strip time
initial solidification
oscillation marks
continuous casting mold
title Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
title_full Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
title_fullStr Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
title_full_unstemmed Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
title_short Investigation on Initial Shell Solidification and the Effect of Negative Strip Time on Oscillation Marks during Continuous Casting
title_sort investigation on initial shell solidification and the effect of negative strip time on oscillation marks during continuous casting
topic negative strip time
initial solidification
oscillation marks
continuous casting mold
url https://www.mdpi.com/2075-4701/13/4/726
work_keys_str_mv AT minghuicao investigationoninitialshellsolidificationandtheeffectofnegativestriptimeonoscillationmarksduringcontinuouscasting
AT yuanheliu investigationoninitialshellsolidificationandtheeffectofnegativestriptimeonoscillationmarksduringcontinuouscasting
AT xingzhongzhang investigationoninitialshellsolidificationandtheeffectofnegativestriptimeonoscillationmarksduringcontinuouscasting