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Original Articles

Influence of interface migration during annealing of martensite/austenite mixtures

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Pages 379-382 | Received 03 Oct 2006, Accepted 26 Jan 2007, Published online: 29 Mar 2007

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Read on this site (5)

Lina Zhou, Guangze Tang, Xinxin Ma, Liqin Wang & Guohua Fan. (2018) In situ observation on microstructural development of high-speed steel during carbon partitioning process. Materials Science and Technology 34:9, pages 1079-1085.
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J. G. Speer, E. De Moor & A. J. Clarke. (2015) Critical Assessment 7: Quenching and partitioning. Materials Science and Technology 31:1, pages 3-9.
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G. A. Thomas & J. G. Speer. (2014) Interface migration during partitioning of Q&P steel. Materials Science and Technology 30:9, pages 998-1007.
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D. V. Edmonds & J. G. Speer. (2010) Martensitic steels with carbide free microstructures containing retained austenite. Materials Science and Technology 26:4, pages 386-391.
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T. Y. Hsu (Xu Zuyao). (2008) Quenching–partitioning–tempering process for ultra-high strength steel. International Heat Treatment and Surface Engineering 2:2, pages 64-67.
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Hojun Gwon, Sung-Ho Kim, Jong Jin Jeon & Sung-Joon Kim. (2021) C clustering and partitioning by static strain aging in cold-rolled 16Cr-5Ni supermartensitic stainless steel. Scripta Materialia 192, pages 106-110.
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Yuantao Xu, Wei Li, Xunwei Zuo, Yu Li, Caiyi Zhang, Na Min, Hao Chen & Xuejun Jin. (2019) Nanoprecipitation-suppressed ferrite transformation (γ → α) during tempering in a medium‑manganese steel. Scripta Materialia 162, pages 391-396.
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M. Gouné, S. Aoued, F. Danoix, G. Geandier, A. Poulon-Quintin, J.C. Hell, M. Soler & S.Y.P. Allain. (2019) Alloying-element interactions with austenite/martensite interface during quenching and partitioning of a model Fe-C-Mn-Si alloy. Scripta Materialia 162, pages 181-184.
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P.G. Kubendran Amos, Ephraim Schoof, Nick Streichan, Daniel Schneider & Britta Nestler. (2019) Phase-field analysis of quenching and partitioning in a polycrystalline Fe-C system under constrained-carbon equilibrium condition. Computational Materials Science 159, pages 281-296.
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Bin Chen, Juhua Liang, Tao Kang, Ronghua Cao, Cheng Li, Jiangtao Liang, Feng Li, Zhengzhi Zhao & Di Tang. (2018) A Study of the Optimum Quenching Temperature of Steels with Various Hot Rolling Microstructures after Cold Rolling, Quenching and Partitioning Treatment. Metals 8:8, pages 579.
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Arthur S. Nishikawa, Maria J. Santofimia, Jilt Sietsma & Hélio Goldenstein. (2018) Influence of bainite reaction on the kinetics of carbon redistribution during the Quenching and Partitioning process. Acta Materialia 142, pages 142-151.
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Z.Z. Zhao, J.H. Liang, A.M. Zhao, J.T. Liang, D. Tang & Y.P. Gao. (2017) Effects of the austenitizing temperature on the mechanical properties of cold-rolled medium-Mn steel system. Journal of Alloys and Compounds 691, pages 51-59.
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E. De Moor & J.G. Speer. 2017. Automotive Steels. Automotive Steels 289 316 .
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Ian C. Jenkins, Marie T. Casey, James T. McGinley, John C. Crocker & Talid Sinno. (2014) Hydrodynamics selects the pathway for displacive transformations in DNA-linked colloidal crystallites. Proceedings of the National Academy of Sciences 111:13, pages 4803-4808.
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Timothy D. Bigg, David V. Edmonds & Edwin S. Eardley. (2013) Real-time structural analysis of quenching and partitioning (Q&P) in an experimental martensitic steel. Journal of Alloys and Compounds 577, pages S695-S698.
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Javad Mola & Bruno C. De Cooman. (2012) Quenching and Partitioning (Q&P) Processing of Martensitic Stainless Steels. Metallurgical and Materials Transactions A 44:2, pages 946-967.
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E. Paravicini Bagliani, M.J. Santofimia, L. Zhao, J. Sietsma & E. Anelli. (2013) Microstructure, tensile and toughness properties after quenching and partitioning treatments of a medium-carbon steel. Materials Science and Engineering: A 559, pages 486-495.
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Shanqiang Ying & Han Dong. 2013. Proceedings of the FISITA 2012 World Automotive Congress. Proceedings of the FISITA 2012 World Automotive Congress 933 947 .
Han Dong. (2012) High performance steels: Initiative and practice. Science China Technological Sciences 55:7, pages 1774-1790.
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M. J. SantofimiaLie ZhaoJilt Sietsma. (2012) Volume Change Associated to Carbon Partitioning from Martensite to Austenite. Materials Science Forum 706-709, pages 2290-2295.
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M. J. Santofimia, L. Zhao & J. Sietsma. (2011) Overview of Mechanisms Involved During the Quenching and Partitioning Process in Steels. Metallurgical and Materials Transactions A 42:12, pages 3620-3626.
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M. J. SantofimiaJohn G. Speer, Lie ZhaoJilt Sietsma. (2011) Model for the Annealing of Partial Martensite-Austenite Microstructures in Steels. Solid State Phenomena 172-174, pages 567-572.
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M.J. Santofimia, T. Nguyen-Minh, L. Zhao, R. Petrov, I. Sabirov & J. Sietsma. (2010) New low carbon Q&P steels containing film-like intercritical ferrite. Materials Science and Engineering: A 527:23, pages 6429-6439.
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V. I. Savran, S. E. Offerman & J. Sietsma. (2010) Austenite Nucleation and Growth Observed on the Level of Individual Grains by Three-Dimensional X-Ray Diffraction Microscopy. Metallurgical and Materials Transactions A 41:3, pages 583-591.
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Yujie Zhu & Chunsheng Wang. (2010) Galvanostatic Intermittent Titration Technique for Phase-Transformation Electrodes. The Journal of Physical Chemistry C 114:6, pages 2830-2841.
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Maria Jesus SantofimiaLie ZhaoYoshiki TakahamaJilt Sietsma. (2010) The Complexity of the Microstructural Changes during the Partitioning Step of the Quenching and Partitioning Process in Low Carbon Steels. Materials Science Forum 638-642, pages 3485-3490.
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M.J. Santofimia, J.G. Speer, A.J. Clarke, L. Zhao & J. Sietsma. (2009) Influence of interface mobility on the evolution of austenite–martensite grain assemblies during annealing. Acta Materialia 57:15, pages 4548-4557.
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