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Effects of aluminum content on cracking phenomenon occurring during cold rolling of three ferrite-based lightweight steel

Authors
손석수
Issue Date
Sep-2013
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
Calphad; Cold rolling; Edge crack; Ferritic lightweight steel; x-Carbide
Citation
ACTA MATERIALIA, v.61, no.15, pp.5626 - 5635
Indexed
SCIE
SCOPUS
Journal Title
ACTA MATERIALIA
Volume
61
Number
15
Start Page
5626
End Page
5635
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/139993
DOI
10.1016/j.actamat.2013.06.004
ISSN
1359-6454
Abstract
The effects of Al content on cracking phenomena occurring during cold rolling of ferritic lightweight steels were investigated in relation to microstructural modification including x-carbides. Three steels were fabricated, varying the Al content between 4 and 6 wt.%, and the center and edge areas of steel sheets containing 6 wt.% Al were cracked during cold rolling. The three steels were composed of ferrite grains and kappa-carbides in a banded shape, and the overall volume fraction of x-carbide increased with increasing Al content. The shape of lamellar kappa-carbides inside kappa-carbide bands was changed from short and thin to long and thick. Microstructural observation of the deformed region of fractured tensile specimens revealed that deformation bands were homogeneously formed in wide areas of ferrite matrix in the steels containing 4-5 wt.% Al, and x-carbide bands and boundary kappa-carbides were hardly cracked. In the steel containing 6 wt.% Al, however, microcracks were initiated at grain boundary x-carbides and long lamellar kappa-carbides inside x-carbide bands. They led to the center or edge cracking during cold rolling. To prevent or minimize cracking, it was necessary to avoid the lengthening or thickening of lamellar x-carbides. Therefore, it was recommended that t
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공과대학 (Department of Materials Science and Engineering)
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