The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill

The mechanism of the position-mode side guide in correcting slab centerline profile and camber in the roughing process of a hot strip mill (HSM) was analyzed using finite element simulation. The finite element model was established based on the actual size of the roughing mill and on the actual actu...

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Main Authors: Han-Kai Hsu, Jong-Ning Aoh
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/9/5/504
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spelling doaj-601c90f48b054bc5af1afb82463d2a8d2020-11-25T00:59:38ZengMDPI AGMetals2075-47012019-04-019550410.3390/met9050504met9050504The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip MillHan-Kai Hsu0Jong-Ning Aoh1Advanced Institute of Manufacturing with High-Tech Innovations AIMHI, Department of Mechanical Engineering, National Chung Cheng University, Minhsiung, Chiayi 62102, TaiwanAdvanced Institute of Manufacturing with High-Tech Innovations AIMHI, Department of Mechanical Engineering, National Chung Cheng University, Minhsiung, Chiayi 62102, TaiwanThe mechanism of the position-mode side guide in correcting slab centerline profile and camber in the roughing process of a hot strip mill (HSM) was analyzed using finite element simulation. The finite element model was established based on the actual size of the roughing mill and on the actual actuating time sequence of the roughing mill in China Steel Corporation (CSC), Kaohsiung. This work could be the first to give an insight into the mechanism of side guides in correcting the slab camber. Time sequence analysis was explored to visualize the progress of centerline profile variation and the interaction between the slab and the related roughing mill components at different moments. The history of reaction forces exerted on the slab was analyzed to explain the interaction between roughing mill components and the slab. The effect of the separation distance of side guide and the effect of the slab wedge on the centerline profile was investigated. A schematic model illustrating the reactions and the resulting moments exerted on the slab was created. By examining the force history, the cross-sectional strain/stress distribution, and the roll force across the horizontal roller, the correcting mechanism of the side guide could be elucidated. The simulation results provide further knowledge in selection and dimension design of side guide to improve the effectiveness of side guide in correcting the slab profile.https://www.mdpi.com/2075-4701/9/5/504position-mode side guidehot strip millroughing processslab wedgeslab camberfinite element modeling
collection DOAJ
language English
format Article
sources DOAJ
author Han-Kai Hsu
Jong-Ning Aoh
spellingShingle Han-Kai Hsu
Jong-Ning Aoh
The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
Metals
position-mode side guide
hot strip mill
roughing process
slab wedge
slab camber
finite element modeling
author_facet Han-Kai Hsu
Jong-Ning Aoh
author_sort Han-Kai Hsu
title The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
title_short The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
title_full The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
title_fullStr The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
title_full_unstemmed The Mechanism of Position-Mode Side Guide in Correcting Camber in Roughing Process of a Hot Strip Mill
title_sort mechanism of position-mode side guide in correcting camber in roughing process of a hot strip mill
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2019-04-01
description The mechanism of the position-mode side guide in correcting slab centerline profile and camber in the roughing process of a hot strip mill (HSM) was analyzed using finite element simulation. The finite element model was established based on the actual size of the roughing mill and on the actual actuating time sequence of the roughing mill in China Steel Corporation (CSC), Kaohsiung. This work could be the first to give an insight into the mechanism of side guides in correcting the slab camber. Time sequence analysis was explored to visualize the progress of centerline profile variation and the interaction between the slab and the related roughing mill components at different moments. The history of reaction forces exerted on the slab was analyzed to explain the interaction between roughing mill components and the slab. The effect of the separation distance of side guide and the effect of the slab wedge on the centerline profile was investigated. A schematic model illustrating the reactions and the resulting moments exerted on the slab was created. By examining the force history, the cross-sectional strain/stress distribution, and the roll force across the horizontal roller, the correcting mechanism of the side guide could be elucidated. The simulation results provide further knowledge in selection and dimension design of side guide to improve the effectiveness of side guide in correcting the slab profile.
topic position-mode side guide
hot strip mill
roughing process
slab wedge
slab camber
finite element modeling
url https://www.mdpi.com/2075-4701/9/5/504
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