보론 첨가강에서 연주 냉각속도가 고온연성에 미치는 영향(주편 코너 크랙 발생 방지 방안 확보연구)

During the continuous casting of boron-bearing steel, the corner cracks on the slab are formed by deformation with low strain rate and rapid cooling at the unbending temperature within the range of 800- 1,000o C. Especially, the rapid cooling in the corner of slab during the continuous casting leads...

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Bibliographic Details
Published in대한금속·재료학회지, 46(6) pp. 329 - 337
Main Authors 조경철, 구양모, 박중길
Format Journal Article
LanguageKorean
Published 대한금속·재료학회 01.06.2008
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ISSN1738-8228
2288-8241

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Summary:During the continuous casting of boron-bearing steel, the corner cracks on the slab are formed by deformation with low strain rate and rapid cooling at the unbending temperature within the range of 800- 1,000o C. Especially, the rapid cooling in the corner of slab during the continuous casting leads to as corner cracking. Therefore, in this study, the hot tensile tests applied to the different cooling rates were taken into account in order to study the effect of cooling rate on the hot ductility of boron-bearing steel. The results revealed that increasing cooling rate deteriorate the hot ductility of boron- bearing steel. Rapid decreasing of the hot ductility is caused by formation of a film-like ferrite and precipitate at the austenite grain boundaries. The morphology of the precipitates in the boron-bearing steel was monitored by PTA (Particle Tracking Autoradiography) and TEM, we observed MnS and BN compound and their morphology was quite different depending on the cooling rates. When the cooling rate is increased, rodshape MnS and BN precipitates can be formed along the austenite grain boundaries. It can cause that weakening the boundary region and decreasing the hot ductility of boron-bearing steel. KCI Citation Count: 10
Bibliography:G704-000085.2008.46.6.002
ISSN:1738-8228
2288-8241