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Design of low-Ni martensitic steels with novel cryogenic impact toughness exceeding 190 J
- 이현욱;
- 박탁민;
- Seo, Namhyuk;
- Lee, Seok-Jae;
- Lee, Changmin;
- ... Han, Jeongho
WEB OF SCIENCE
21SCOPUS
22초록
This study aimed to develop steels with reasonable material costs to replace Fe–9Ni (wt.%) steel, which is suitable for cryogenic applications. To this end, a newly designed Fe–2Mn–5Ni-0.1C steel was treated by quenching–tempering (QT) and quenching–lamellarizing–tempering (QLT); subsequently, the microstructural evolutions and resultant impact absorbed energy were systematically investigated. At −196 °C, the QLT-processed steel exhibited a higher impact absorbed energy (∼193 J) than the QT-processed steel (∼168 J), and it was similar to that of Fe–9Ni steel. The excellent impact absorbed energy of the QLT-processed sample was attributed to the high damage tolerance afforded by the active transformation-induced plasticity from the retained austenite and the pronounced plastic deformation of the soft martensitic matrix due to double-step tempering.
키워드
- 제목
- Design of low-Ni martensitic steels with novel cryogenic impact toughness exceeding 190 J
- 저자
- 이현욱; 박탁민; Seo, Namhyuk; Lee, Seok-Jae; Lee, Changmin; Han, Jeongho
- 발행일
- 2022-04
- 유형
- Article
- 저널명
- Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
- 권
- 840
- 페이지
- 1 ~ 10