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Published in: Metallurgical and Materials Transactions A 1/2010

01-01-2010

Correlation of Microstructure and Cracking Phenomenon Occurring during Hot Rolling of Lightweight Steel Plates

Authors: Sang Yong Shin, Hackcheol Lee, Seung Youb Han, Chang-Hyo Seo, Kayoung Choi, Sunghak Lee, Nack J. Kim, Jai-Hyun Kwak, Kwang-Geun Chin

Published in: Metallurgical and Materials Transactions A | Issue 1/2010

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Abstract

An investigation was conducted into the correlation of microstructure and the cracking phenomenon that often occurred in hot-rolled lightweight steel plates. Two kinds of steels were fabricated with varying Mn and Al contents, and their microstructures, tensile properties, and high-temperature transformation behavior were investigated. In the two steels, banded structures containing ferrite grains and κ-carbides were well developed along the rolling direction. Detailed microstructural analyses showed that cracks initiated at film-type κ-carbides continuously formed interfaces between bands, while the band populated with κ-carbides did not play an important role in initiating cracks. Thus, the formation of band structures and film-type interfacial κ-carbides must be minimized to prevent the cracking. The decreased content of hardenability elements, including aluminum, higher finish-rolling temperature, reduced central segregation during the slabmaking process, and decreased material variation during hot rolling, were suggested as practical methods for preventing the cracking.

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Footnotes
1
JEOL is a trademark of Japan Electron Optics Ltd., Tokyo.
 
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Metadata
Title
Correlation of Microstructure and Cracking Phenomenon Occurring during Hot Rolling of Lightweight Steel Plates
Authors
Sang Yong Shin
Hackcheol Lee
Seung Youb Han
Chang-Hyo Seo
Kayoung Choi
Sunghak Lee
Nack J. Kim
Jai-Hyun Kwak
Kwang-Geun Chin
Publication date
01-01-2010
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 1/2010
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-009-0081-1

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