Solute Concentration and Carbides Formation for Steel Milling Rolls
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概要
- 論文の詳細を見る
The selection and the formation of carbide govern quality and the service life of hot steel milling rolls. Thus the microsegregation and the formation of the carbides and the graphite during the solidification have been investigated for high speed steel type cast iron and Ni-hard type cast iron. The crystallization of high speed steel type cast iron proceeds in the order of primary austenite (γ), γ+MC and γ+M2C eutectic. On the other hand, in Ni-hard type cast iron, eutectic graphite flakes can crystallize after the formation of primary γ, and γ+M3C eutectic by controlling the content of Ni and Si in spite of containing strong carbide formers such as Cr. As γ+carbide eutectic grows, the residual liquid among eutectic cells becomes rich or poor in carbide formers according the partition coefficient between residual liquid and eutectic cell. It is realized that the change of composition of carbide formers during the solidification is estimated with Scheil–Gulliver equation and computed phase diagrams in both of cast irons. The graphite forming tendency is also evaluated by applying the parameter, which expresses the solubility limit of carbon to the molten iron for Ni-hard type cast iron.
- 社団法人 日本鉄鋼協会の論文
- 2009-07-15
著者
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MIYAHARA Hirofumi
Department of Materials Science and Engineering, Graduate School of Engineering, Kyushu University
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Ogi Keisaku
Department Of Materials Science & Engineering Kyushu University
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Miyahara Hirofumi
Department Of Materials Science & Engineering Kyushu University
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Miyahara Hirofumi
Department Of Internal Medicine Chiba Higashi Hospital
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Ogi Keisaku
Oita National College Of Technology
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BRAVO Sergio
Department of Materials Science and Engineering, Kyushu University
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YAMAMOTO Kaoru
Kurume National College of Technology
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Bravo Sergio
Department Of Materials Science And Engineering Kyushu University
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Yamamoto Kaoru
Department Of Materials Science And Engineering Kurume National College Of Technology
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- PREFACE
- Influence of Solidification Microstructure and Distribution of Reinforcement on Fatigue Characteristics of Notched SiC Reinforced AC4B Alloy Composites
- Notch Size Effects in the Fatigue Characteristics of Al-Si-Cu-Mg Cast Alloy
- Effect of Twin Growth on Unidirectional Solidification Control of Multicrystal Silicon for Solar Cells
- Solidification Microstructures and Quench/Temper Hardness of Tantalum Added High-Carbon High-Speed Steel Type Cast Alloy