Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment

In this paper, by changing the shape of the inner wall of the nozzle, a water model experiment was carried out on the slab with the section of 200 / mm × 1 200 / mm. The results show that under the same immersion depth and the same angle, the improved No.1 nozzle and the improved No.2 nozzle have sw...

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Main Authors: C. Y. Cai, X. Deng, M. G. Shen, X. Y. Qiao
Format: Article
Language:English
Published: Croatian Metallurgical Society 2023-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/434274
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author C. Y. Cai
X. Deng
M. G. Shen
X. Y. Qiao
author_facet C. Y. Cai
X. Deng
M. G. Shen
X. Y. Qiao
author_sort C. Y. Cai
collection DOAJ
description In this paper, by changing the shape of the inner wall of the nozzle, a water model experiment was carried out on the slab with the section of 200 / mm × 1 200 / mm. The results show that under the same immersion depth and the same angle, the improved No.1 nozzle and the improved No.2 nozzle have swirling flow, which reduced the dead region and the internal longitudinal flow velocity, and the swirl ratio generated in improved No. 2 nozzle is more obvious than improved No. 1 nozzle. The impact depth of the velocity at the outlet of the improved No.2 nozzle is obviously lower than that of the original nozzle and the improved No.1 nozzle.
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spelling doaj.art-31ae9f44b6f64718a8c3170677dfefdc2023-05-02T10:08:18ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762023-01-01623-4349351Study on structural optimization of submerged nozzle of continuous casting mold by water model experimentC. Y. Cai0X. Deng1M. G. Shen2X. Y. Qiao3School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan, ChinaSchool of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan, ChinaSchool of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan, ChinaSchool of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan, ChinaIn this paper, by changing the shape of the inner wall of the nozzle, a water model experiment was carried out on the slab with the section of 200 / mm × 1 200 / mm. The results show that under the same immersion depth and the same angle, the improved No.1 nozzle and the improved No.2 nozzle have swirling flow, which reduced the dead region and the internal longitudinal flow velocity, and the swirl ratio generated in improved No. 2 nozzle is more obvious than improved No. 1 nozzle. The impact depth of the velocity at the outlet of the improved No.2 nozzle is obviously lower than that of the original nozzle and the improved No.1 nozzle.https://hrcak.srce.hr/file/434274steel castingsubmerged entry nozzlemoldwater modelvelocity model
spellingShingle C. Y. Cai
X. Deng
M. G. Shen
X. Y. Qiao
Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
Metalurgija
steel casting
submerged entry nozzle
mold
water model
velocity model
title Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
title_full Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
title_fullStr Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
title_full_unstemmed Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
title_short Study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
title_sort study on structural optimization of submerged nozzle of continuous casting mold by water model experiment
topic steel casting
submerged entry nozzle
mold
water model
velocity model
url https://hrcak.srce.hr/file/434274
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AT xdeng studyonstructuraloptimizationofsubmergednozzleofcontinuouscastingmoldbywatermodelexperiment
AT mgshen studyonstructuraloptimizationofsubmergednozzleofcontinuouscastingmoldbywatermodelexperiment
AT xyqiao studyonstructuraloptimizationofsubmergednozzleofcontinuouscastingmoldbywatermodelexperiment