ASTM Gr.92강의 미세조직 및 기계적 성질에 미치는 템퍼링 온도 및 열처리경로의 영향
In order to investigate the effects of tempering temperature and heat-treatment path on the microstructural and mechanical properties of ASTM Gr.92 steels, four samples with different tempering temperatures and heat-treatment paths were prepared. Three experimental steels showed tempered martensitic...
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Published in | 대한금속·재료학회지, 48(1) pp. 39 - 48 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | Korean |
Published |
대한금속·재료학회
01.01.2010
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Subjects | |
Online Access | Get full text |
ISSN | 1738-8228 2288-8241 |
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Abstract | In order to investigate the effects of tempering temperature and heat-treatment path on the microstructural and mechanical properties of ASTM Gr.92 steels, four samples with different tempering temperatures and heat-treatment paths were prepared. Three experimental steels showed tempered martensitic microstructures, but the sample tempered at 810℃ was presumed to retain partially untempered martensitic microstructures due to a lower α+γ phase regime. M23C6, V(C,N), and Nb(C,N) precipitates were observed in all samples. In addition, Cr2N was observed to be precipitated finely and uniformly by isothermal heat-treatment. The lath width and precipitate size increased with an increase of the tempering temperature.
In particular, the lath width and precipitate size in the isothermal heat-treated samples were much smaller than those of the tempered-only specimens. Because of a fine and uniform precipitate, a reduction of lath width would enhance precipitation hardening, and it was shown that mechanical propertiesincluding the hardness and tensile properties of the steels were improved by isothermal heat-treatment. KCI Citation Count: 4 |
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AbstractList | In order to investigate the effects of tempering temperature and heat-treatment path on the microstructural and mechanical properties of ASTM Gr.92 steels, four samples with different tempering temperatures and heat-treatment paths were prepared. Three experimental steels showed tempered martensitic microstructures, but the sample tempered at 810℃ was presumed to retain partially untempered martensitic microstructures due to a lower α+γ phase regime. M23C6, V(C,N), and Nb(C,N) precipitates were observed in all samples. In addition, Cr2N was observed to be precipitated finely and uniformly by isothermal heat-treatment. The lath width and precipitate size increased with an increase of the tempering temperature.
In particular, the lath width and precipitate size in the isothermal heat-treated samples were much smaller than those of the tempered-only specimens. Because of a fine and uniform precipitate, a reduction of lath width would enhance precipitation hardening, and it was shown that mechanical propertiesincluding the hardness and tensile properties of the steels were improved by isothermal heat-treatment. KCI Citation Count: 4 |
Author | 한창희 김성호 백종혁 김연근 홍순익 이찬복 |
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Title | ASTM Gr.92강의 미세조직 및 기계적 성질에 미치는 템퍼링 온도 및 열처리경로의 영향 |
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