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基于奥氏体晶粒长大规律研究和约束条件下碳准平衡热力学(CCE)模型的模拟计算结果,优化设计了以铝(1.79%,质量分数,下同)替硅的Q-P-T(Quenching-Partitioning-Tempering)试验钢的热处理工艺,测试了钢的力学性能。采用OM、SEM、TEM和XRD对试验钢组织进行了观察和分析。结果表明:试验钢具有良好的强塑性匹配,当抗拉强度为1 260MPa时,总伸长率可达到18%,同时发现,试验钢初始淬火板条马氏体的回火转变是影响试验钢力学性能及随碳分配-回火时间变化的主导因素,从而使其具有回火马氏体性能变化的特征。

The heat treatment process parameters of a Q-P-T steel containing 1.79%Al instead of Si were designed based on the research of the austenite grain growth feature and the CCE model.Mechanical properties of experimental steel were tested and the steel microstructures were studied by using OM,SEM,TEM and XRD.The results show that the experimental steel has good strength and ductility.When the tensile strength is 1 260 MPa,it′s total elongation reaches 18%.Meanwhile,it is also found that the changes during partitioning-tempering of the initial lath martensite are decisive factors for the mechanical properties and the way of mechanical property change with partitioning-tempering time is of the same characteristics of the property change of martensite with tempering time.

参考文献

[1] 徐祖耀.钢热处理的新工艺[J].热处理,2007(01):1-11.
[2] Speer J G;Matlocka D K;De Cooman B C et al.Carbon Par- titioning Into Austenite After Martensite Transformation[J].Acta Materialia,2003,51:2611.
[3] Matlock D K;Brautigam V E;Speer J G .Application of the Quenching and Partitioning (Q&P) Process to a Medium-Car- bon High Simicroalloyed Bar Steel[J].Materials Science Fo- rum,2003,426 432(08):1089.
[4] Speer J G;Assunego F C R;Matlock D K et al.The "Quenching and Partitioning" Process:Background and Re- cent Progress[J].Materials Research,2005,8(04):417.
[5] Edmonds D V;He K;Rizzo F C.Quenching and Parti- tioning Martensite A Novel Steel Heat Treatment[J].Mate- rials Science and Engineering A,2006(438-440):25.
[6] Clarke A J;Speer J G;Miller M K et al.Carbon Partitioning to Austenite From Martensite or Bainite During the Quench and Partition (Q&P) Process:A Critical Assessment[J].Ac- ta Mater,2008,56:16.
[7] Wang, XD;Zhong, N;Rong, YH;Hsu, TY;Wang, L .Novel ultrahigh-strength nanolath martensitic steel by quenching-partitioning-tempering process[J].Journal of Materials Research,2009(1):260-267.
[8] Zhong, N;Wang, XD;Wang, L;Rong, YH .Enhancement of the mechanical properties of a Nb-microalloyed advanced high-strength steel treated by quenching-partitioning-tempering process[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2009(1/2):111-116.
[9] Krauss G.Heat Treatment and Processing Principles[M].Metals Park,OH:ASM International,1990
[10] 徐锟 .新型冷轧TRIP钢即炮导药筒制造关键技术的研究[D].北京:北京科技大学,2009.
[11] Miller R L .A Rapid X-Ray Method for the Determination of Retained Austenite[J].Transactions of the ASM,1964,57:892.
[12] J. G. Speer;R. E. Hackenberg;B. C. Decooman;D. K. Matlock .Influence of interface migration during annealing of martensite/austenite mixtures[J].Philosophical Magazine Letters,2007(6):379-382.
[13] ZHONG N;WANG X D;RONG Y H .Interface Migration Between Martenstie and Austenite During Quenching and Partitioning (Q&P) Process[J].Mater Sei Technol,2006,22:751.
[14] Hsu T Y;Li X M .Diffusion of Carbon During the Formation of Low-Carbon Martensite[J].Seripta Metall,1983,17:1285.
[15] A.J. Clarke;J.G. Speer;M.K. Miller .Carbon partitioning to austenite from martensite or bainite during the quench and partition (Q&P) process: A critical assessment[J].Acta materialia,2008(1):16-22.
[16] E. DE MOOR;S. LACROIX;A.J. CLARKE .Effect of Retained Austenite Stabilized via Quench and Partitioning on the Strain Hardening of Martensitic Steels[J].Metallurgical and materials transactions. A, physical metallurgy and materials science,2008(11):2586-2595.
[17] X.D. WANG;B.X. HUANG;L. WANG .Microstructure and Mechanical Properties of Microalloyed High-Strength Transformation-Induced Plasticity Steels[J].Metallurgical and materials transactions. A, physical metallurgy and materials science,2008(1):1-7.
[18] WANG X D;XU W Z;GUO Z H et al.Carbide Character- ization in a Nb-Microalloyed Advanced Ultrahigh Strength Steel After Quenching-Partitioning-Tempering Process[J].Materials Science and Engineering A,2010,527:3373.
[19] Rizzo F C;Edmonds D V;He K.Carbon Enrichment of Austenite and Carbide Precipitation During the Quenching and Partitioning (Q&P) Process[A].Phoenix AZ:[s.n.],2005:535.
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