Process simulation and microstructure analysis of low carbon Si-Mn quenched and partitioned steel

Author:

Zhao Cai,Tang Di,Jiang Hai-tao,Zhao Song-shan,Li Hui

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials

Reference8 articles.

1. MI Zhen-li, TANG Di, YAN Ling, et al. High-Strength and High-Plasticity TWIP Steel for Modern Vehicle [J]. Material Science and Technology, 2005, 21(4): 451.

2. Speer J G, Streicher A M, Matlock D K, et al. Quenching and Partitioning: a Fundamentally New Process to Create High Strength TRIP Sheet Microstructures [A]. The Thermodynamics, Kinetics, Characterization and Modeling of Austenite Formation and Decomposition [C]. Chicago: Minerals Metals and Mater, 2003. 502.

3. Gerdemann F L H, Speer J G, Matlock D K. Microstructure and Hardness of Steel Grade 9260 Heat-Treated by the Quenching and Partitioning (Q&P) Process [A]. Materials Science and Technology [C]. New Orleans: Association for Iron and Steel Technology, 2004. 439.

4. Speer J G, Edmonds D V, Rizzo F C. Partitioning of Carbon From Supersaturated Plates of Ferrite, With Application to Steel Processing and Fundamentals of the Bainite Transformation [J]. Current Opinion in Solid State and Materials Science, 2004, 8(3): 219.

5. Clarke A, Speer J G, Matlock D K, et al. Microstructure and Carbon Partitioning in a 0.19% C-1.59% Mn-1. 63% Si Trip Sheet Steel Subjected to Quenching and Partitioning [A]. Proceedings of an International Conference on Solid-Solid Phase Transformations in Inorganic Materials [C]. Phoenix: TMS, 2005. 99.

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