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介绍了一种马氏体钢淬火+(碳)配分的热处理工艺,并对该工艺的提出、热力学、动力学以及试验参数对残余奥氏体量和形态以及力学性能的影响进行了概述.

参考文献

[1] Krauss G .Martensite in Steel:Strength and Structure[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1999,273-275:40.
[2] Bhadeshia H K D H.Bainite in Steel[M].London:The Inst Materials Cambridge Press,2001
[3] Matlock D K;Brautigam V E;Speer J G .Application of the Quenching and Partitioning (Q&P) Process to a Medium-Carbon High Si Microalloyed Bar Steel[J].Materials Science Forum,2003,426-432:1089.
[4] Hultgren A .Isothermal Transformation of Austenite[J].Transactions ASM,1947,39:915.
[5] Hillert M;Agren J .On the Definitions of Paraequilibrium and Orthoequilibrium[J].Scripta Materialia,2004,50:697.
[6] Hillert M;Agren J .Reply to Comments on "On the Definition of Paraequilibrium and Orthoequilibrium"[J].Scripta Materialia,2005,52:87.
[7] 徐祖耀.钢热处理的新工艺[J].热处理,2007(01):1-11.
[8] Speer J;Matlock D K;Cooman B C.Carbon Partitioning Into Austenite After Martensite Transformation[J].Acta Materialia,2003(51):2600.
[9] Zhong N;Wang X D;Rong Y H et al.Interface Migration Between Martensite and Austenite During Quenching and Partitioning (Q&P) Process[J].Journal of Materials Science and Technology,2006,22:751.
[10] Speer J G;Hackenberg R E;DeCooman B C et al.Interface Migration During Annealing of Martensite/Austenite Mixture[J].Philosophical Magazine Letters,2007,87:379.
[11] Edmonds D V;Rizzo K;He F C et al.Quenching and Partitioning Martensite--a Nnovel Steel Heat Treatment[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2006,438-440:25.
[12] Gerdeman F L H .Microstructure and Hardness of 9260 Steel Heat-Treated by the Quenching and Partitioning (Q&P) Process[D].Germany,Aachen:University of Technology,2004.
[13] Speer J G;Streicher A M;Matlock D K.Quenching and Partitioning of a Fundamentally New Process to Create High Strength TRIP Sheet Microstructures[A].USA:TMS-ISS Warrendale PA,2003:505.
[14] Edmonds D V;Kejian H;Fernando C R et al.Microstructural Features of a New Martensitic Steel Heat Treatment:Quenching and Partitioning[J].Materials Science Forum,2007,539-543:4819.
[15] Liu S K;Zhang J .Influence of the Si and Mn Concentrations on the Kinetics of the Bainte Transformation in Fe-C-Si-Mn Alloy[J].Metallurgical and Materials Transactions,1990,21A(04):1517.
[16] Matlock D K;Krauss G;Speer J G .Microstructures and Properties of Direct-Cooled Mieroalloy Forging Steels[J].Journal of Materials Processing Technology,2001,117:324.
[17] Gallagher M F;Speer J G;Matlock D K.Microstructure Development in TRIP-Sheet Steel Containing Si,Al,and P[A].Warrendale,PA:Iron and Steel Society,2002:153.
[18] Lin LI,B.C.De Cooman,P.Wollants,Yanlin HE,Xiaodong ZHOU.Effect of Aluminum and Silicon on Transformation Induced Plasticity of the TRIP Steel[J].材料科学技术学报(英文版),2004(02):135-138.
[19] Bhadeshin H K D H;Edmonds D V .The Bainite Transformation in a Silicon Steel[J].Metallurgical and Materials Transactions,1979,10A:895.
[20] J. Zrnik;I. Mamuzic;S. V. Dobatkin .Recent Progress in High Strength Low Carbon Steels[J].Metalurgija,2006(4):323-331.
[21] Streicher A M;Speer J G;Matlock D K.Quenching and Partitioning Response of a Si-Added TRIP Sheet Steel[A].Warrendale,PA,USA:AIST,2004:51.
[22] Rizzo F;Martins A R;Speer J G .Quenching and Partitioning of Ni-Added High Strength Steel[J].Materials Science Forum,2007,539-543:4476.
[23] Zhong N;Wang X D;Huang B X.Mierostructures and Mechanical Property of Quenched and Partitioned Fe-C-Mn-Si Steel[A].Gyeongju,Korea:Inst Metals and Materials,2006:885.
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