Effect of Cooling Rate on Oxide Precipitation during Solidification of Low Carbon Steels.
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概要
- 論文の詳細を見る
Effect of cooling rate on oxide precipitation during solidification was investigated using Ti Al-Ca deoxidized low-carbon steels. The number and size distribution of oxides in the continuously cast steels have been observed and theoretically analyzed. The results obtained are as follows. The Ti deoxidized steel has more soluble oxygen before solidification than the Al-Ca deoxidized steel. With the increase in the cooling rate during solidification, the number of oxides increases and the size becomes smaller in the Ti deoxidized steel. During the solidification, segregation makes oxygen content increase above the equilibrium value with oxide in Ti deoxidized steel. The difference between the oxygen content increased by segregation and that in equilibrium is a driving force for the oxide growth. With increasing cooling rate, time for oxide growth decreases and supersaturation of oxygen for oxide precipitation increases. Consequently, the number of the oxide increases by the increase in the frequency of precipitates during solidification for high cooling rate.
- The Iron and Steel Institute of Japanの論文
著者
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GOTO Hiroki
Kimitsu R & D Laboratory, Nippon Steel Corporation
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MIYAZAWA Ken-ichi
Kimitsu R & D Laboratory, Nippon Steel Corporation
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Tanaka Kazuaki
Kimitsu Works Nippon Steel Corp.
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Miyazawa Ken-ichi
Kimitsu R&D Laboratory, Nippon Steel Corporation
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Yamaguchi Koh-ichi
Kimitsu R&D Laboratory, Nippon Steel Corporation
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Ogibayashi Shigeaki
Kimitsu R&D Laboratory, Nippon Steel Corporation
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Goto Hiroki
Kimitsu R&D Laboratory, Nippon Steel Corporation
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Ogibayashi Shigeaki
Kimitsu R&D Laboratory, Nippon Steel Corporation
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Yamaguchi Koh-ichi
Kimitsu R&D Laboratory, Nippon Steel Corporation
関連論文
- Effect of Cooling Rate on Composition of Oxides Precipitated during Solidification of Steels
- Effect of Oxygen Content on Size Distribution of Oxides in Steel
- Effect of the Primary Oxide on the Behavior of the Oxide Precipitating during Solidification of Steel
- The Effect of S and Mn on the High-temperature Oxidation and Scale Spallation Behavior of Low-carbon Steels
- Reoxidation Behavior of Molten Steel in Non-killed and Al-killed Steels
- Preface to the Special Issue "Recent Advances in Solidification"
- Effect of the Composition of Oxide on the Reaction between Oxide and Sulfur during Solidification of Steels
- Formation of Solidification Structure in Twin Roll Casting Process of 18Cr-8Ni Stainless Steel
- Effect of Cooling Rate on Oxide Precipitation during Solidification of Low Carbon Steels.