Optimization Design on Slab Chamfered-Mold Taper by Using FEM

In order to solve the gap appears frequently on chamfer slab in the chamfered position and resulting in slab crack problems, the thermo-mechanical coupled solidification process in the slab chamfered-mold of molten steelhas been mathematical simulated by using the commercial finite element software...

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Main Authors: Yang Liu, Wei-hua Wang, Chang-wen Ma
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817503064
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spelling doaj-038d3150f8564c10a4a3a2aebd2573242021-04-02T10:10:16ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011750306410.1051/matecconf/201817503064matecconf_ifcae-iot2018_03064Optimization Design on Slab Chamfered-Mold Taper by Using FEMYang LiuWei-hua WangChang-wen MaIn order to solve the gap appears frequently on chamfer slab in the chamfered position and resulting in slab crack problems, the thermo-mechanical coupled solidification process in the slab chamfered-mold of molten steelhas been mathematical simulated by using the commercial finite element software ANSYS. The slab shell shrinkage and deformation can’t be made up effectively by putting to use traditional single taper mold. The taper in the upper mold is small particularly by adopted 0.9% ~ 1.2%/m, the corner gap grows is difficult to be restrained, and the shell growth in the corners is blocked.According to the calculation results of the model, chamfered-mold narrow taper is gradual, roughly simplified into two sections: the first section is the distance 0.35m from near the meniscus, the larger taper has been adopted and average taper is 2.16%; The second section is distance 0.35m from the meniscus to the mold exit, the smaller taper has been adopted and average taper is1.31%.https://doi.org/10.1051/matecconf/201817503064
collection DOAJ
language English
format Article
sources DOAJ
author Yang Liu
Wei-hua Wang
Chang-wen Ma
spellingShingle Yang Liu
Wei-hua Wang
Chang-wen Ma
Optimization Design on Slab Chamfered-Mold Taper by Using FEM
MATEC Web of Conferences
author_facet Yang Liu
Wei-hua Wang
Chang-wen Ma
author_sort Yang Liu
title Optimization Design on Slab Chamfered-Mold Taper by Using FEM
title_short Optimization Design on Slab Chamfered-Mold Taper by Using FEM
title_full Optimization Design on Slab Chamfered-Mold Taper by Using FEM
title_fullStr Optimization Design on Slab Chamfered-Mold Taper by Using FEM
title_full_unstemmed Optimization Design on Slab Chamfered-Mold Taper by Using FEM
title_sort optimization design on slab chamfered-mold taper by using fem
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description In order to solve the gap appears frequently on chamfer slab in the chamfered position and resulting in slab crack problems, the thermo-mechanical coupled solidification process in the slab chamfered-mold of molten steelhas been mathematical simulated by using the commercial finite element software ANSYS. The slab shell shrinkage and deformation can’t be made up effectively by putting to use traditional single taper mold. The taper in the upper mold is small particularly by adopted 0.9% ~ 1.2%/m, the corner gap grows is difficult to be restrained, and the shell growth in the corners is blocked.According to the calculation results of the model, chamfered-mold narrow taper is gradual, roughly simplified into two sections: the first section is the distance 0.35m from near the meniscus, the larger taper has been adopted and average taper is 2.16%; The second section is distance 0.35m from the meniscus to the mold exit, the smaller taper has been adopted and average taper is1.31%.
url https://doi.org/10.1051/matecconf/201817503064
work_keys_str_mv AT yangliu optimizationdesignonslabchamferedmoldtaperbyusingfem
AT weihuawang optimizationdesignonslabchamferedmoldtaperbyusingfem
AT changwenma optimizationdesignonslabchamferedmoldtaperbyusingfem
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