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1.5 GPa Grade High-Strength Steel Sheet Flattening by Roll Gap Adjustment Considering Pattern Roll Effects

Authors
윤종헌
Issue Date
Apr-2025
Publisher
MDPI
Keywords
advanced high-strength steel; flattening; finite element analysis; roll gap optimization
Citation
MATERIALS, v.18, no.8, pp 1 - 22
Pages
22
Indexed
SCIE
SCOPUS
Journal Title
MATERIALS
Volume
18
Number
8
Start Page
1
End Page
22
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/125279
DOI
10.3390/ma18081702
ISSN
1996-1944
1996-1944
Abstract
This study analyzes a three-stage roll flattening process to improve the flatness of 1.5 GPa grade AHSS sheets. Unlike conventional leveler rolls, which mainly relieve residual stress through longitudinal tension-compression, the second roll has a sloped pattern to induce transverse deformation and redistribute local residual stresses. A twisted sheet was pro-cessed under different roll gap settings (1.3 mm, 1.1 mm, 0.9 mm, and 0.7 mm), and ex-perimental measurements were compared with Abaqus Explicit simulations. At a 1.1 mm gap, the RMSE between experiment and simulation is 0.22 mm, showing the highest agreement. Both twist and crossbow defects are reduced by over 80%, achieving optimal flattening. At 1.3 mm, the simulation overestimates the second roll’s effect, causing exces-sive localized deformation. Reducing the gap to 0.9 mm or 0.7 mm increases discrepan-cies due to roll fixation differences. Experiments allow more central bending, amplifying crossbow, while simulations assume rigid rolls, underestimating curvature. Adjusting the second roll’s geometry to enhance transverse tension-compression and setting the gap to 1.1 mm effectively reduces defects. This method improves flatness while minimizing the number of rolls needed in high-strength steel sheet production.
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ERICA 공학대학 (DEPARTMENT OF MECHANICAL ENGINEERING)
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