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Carbon partitioning into austenite after martensite transformation
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Partitioning of carbon from supersaturated plates of ferrite, with application to steel processing and fundamentals of the bainite transformation
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Escape of carbon from ferrite plates in austenite
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Quenching and partitioning: A fundamentally new process to create high strength TRIP sheet microstructures
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J.G. Speer, A.M. Streicher, D.K. Matlock, F. Rizzo, and G. Krauss, "Quenching and partitioning: a fundamentally new process to create high strength TRIP sheet microstructures", Austenite Deformation and Decomposition, ed. E.B. Damm and M. Merwin, (Warrendale, PA: ISS/TMS, 2003), 502-522.
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11
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13444290479
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Quenching and partitioning response of a Si-added TRIP sheet steel
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ed. J.G. Speer, Warrendale, PA: AIST
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A.M. Streicher, J.G. Speer, D.K. Matlock, and B.C. De Cooman, "Quenching and partitioning response of a Si-added TRIP sheet steel", Proceedings of the International Conference on Advanced High-Strength Sheet Steels for Automotive Applications, ed. J.G. Speer, (Warrendale, PA: AIST, 2004), 51-62.
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14
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0038389459
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Microstructure development in TRIP-sheet steels containing Si, Al, and P
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Warrendale, PA: Iron and Steel Society
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M.F. Gallagher, J.G. Speer, D.K. Matlock, and N.M. Fonstein, "Microstructure development in TRIP-sheet steels containing Si, Al, and P," Proceedings of the 44th Mechanical Working and Steel Processing Conference, (Warrendale, PA: Iron and Steel Society, 2002), 153-172.
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Carbon enrichment of austenite and carbide precipitation during the quenching and partitioning (Q&P) process
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Phoenix, AZ, June
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F.C. Rizzo, D.V. Edmonds, K. He, J.G. Speer, D.K. Matlock, and A.M. Streicher, "Carbon Enrichment of Austenite and Carbide Precipitation During the Quenching and Partitioning (Q&P) Process", International Conference on Solid-Solid Phase Transformations in Inorganic Materials 2005, Phoenix, AZ, June 2005.
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18
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0036510265
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Very strong low temperature bainite
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Packet microstructure in Fe-0.2 pct martensite
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The effect of structure on the deformation of as-quenched and tempered martensite in an Fe-0.2 pct C alloy
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