Effects of alloying elements and the cooling condition on the microstructure, tensile properties, and Charpy impact properties of high-strength bainitic steels

Hyo Kyung Sung, Sang Yong Shin, Byoungchul Hwang, Chang Gil Lee, Nack J. Kim, Sunghak Lee

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

The effects of alloying elements and the cooling condition on the microstructure, tensile properties, and Charpy impact properties of high-strength bainitic steel plates fabricated by a controlled rolling process were investigated in the present study. Eight kinds of steel plates were fabricated by varying C, Cr, and Nb additions under two different cooling rates, and their microstructures and tensile and Charpy impact properties were evaluated. The microstructures present in the steels increased in the order of granular bainite, acicular ferrite, bainitic ferrite, and martensite as the carbon equivalent or cooling rate increased, which resulted in a decrease in the ductility and Charpy absorbed energy. The steels containing a considerable amount of bainitic ferrite or martensite showed very high strengths, together with good ductility and Charpy absorbed energy. In order to achieve the best combination of strength, ductility, and Charpy absorbed energy, granular bainite and acicular ferrite were properly included in the high-strength bainitic steels by controlling the carbon equivalent and cooling rate, while about 50 vol.% of bainitic ferrite or martensite was maintained to maintain the high strength.

Original languageEnglish
Pages (from-to)798-806
Number of pages9
JournalJournal of Korean Institute of Metals and Materials
Volume48
Issue number9
DOIs
StatePublished - Sep 2010

Keywords

  • High-strength bainitic steel
  • Mechanical properties
  • Metals
  • Rolling
  • Scanning electron microscopy (sem)

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