Modeling of intercritical heat treatment of DP and TRIP steels

被引:0
|
作者
Reger, M [1 ]
Vero, B [1 ]
Csepeli, Z [1 ]
Pan, JS [1 ]
机构
[1] Budapest Polytech, Budapest, Hungary
关键词
dual-phase steel; TRIP steel; jorminy end quench method; modeling;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The final microstructure of DP and TRIP assisted steels can evolve after hot working (hot rolling) or during post heat treatment process. In the formation of the final structure a number of different technological parameters have important roles, e.g. end temperature of rolling, cooling rates, temperature of intercritical annealing, etc. As a result of the individual factors and their combinations a lot of product technology routes are feasible. The effect of the different combinations of these technological parameters on the microstructure can be mapped by the special Jominy end-quench test (so called intercritical Jominy end-quench test) described in this paper. Unlike the traditional Jominy test, in this case there is a partial austenizing between A(1) and A(3) temperatures which results in a given amount of ferrite in the microstructure before quenching. The method developed can be applied for mapping DP and TRIP assisted steels ' microstructure in a wide range of technological parameters. The analysis of measured and calculated data can help us find the technological parameters optimal from the microstructural point of view.
引用
收藏
页码:710 / 715
页数:6
相关论文
共 50 条
  • [31] Constitutive Modeling of Hot Deformation of Carbon Steels in the Intercritical Zone
    Jiménez-Lugos, Juan Cancio
    Cabrera-Marrero, José María
    Chávez-Alcalá, José Federico
    Hallen-López, José Manuel
    López-Rodríguez, Josué
    Materials Research, 2022, 25
  • [32] EFFECTS OF INTERCRITICAL HEAT-TREATMENT ON SUSCEPTIBILITY TO TEMPER EMBRITTLEMENT IN NICR STEELS DOPED WITH P AND SB
    UCISIK, AH
    FENG, HC
    MCMAHON, CJ
    JOM-JOURNAL OF METALS, 1976, 28 (12): : A78 - A78
  • [33] Micromechanical modeling of fatigue behavior of DP steels
    Moeini, Ghazal
    Ramazani, Ali
    Sundararaghavan, Veera
    Koenke, Carsten
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 689 : 89 - 95
  • [34] TRIP Steels: A Multiscale Computational Simulation and Experimental Study of Heat Treatment and Mechanical Behavior
    Papadioti, Ioanna
    Bellas, Ilias
    Tzini, Maria-Ioanna T.
    Christodoulou, Peter I.
    Aravas, Nikolaos
    MATERIALS, 2020, 13 (02)
  • [35] A macro modeling of phase transition in austenitic stainless steels and TRIP steels
    Thibaud, S
    Boudeau, N
    Gelin, JC
    MATERIALS PROCESSING AND DESIGN: MODELING, SIMULATION AND APPLICATIONS, PTS 1 AND 2, 2004, 712 : 1777 - 1782
  • [36] Modeling of Reversibleγ/αTransformations of Low Carbon Steels in the Intercritical Temperature Range
    Tamás RTl
    Imre FELDE
    Hakan GR
    材料热处理学报, 2004, (05) : 702 - 705
  • [37] Modeling of reversible γ/α transformations of low carbon steels in the intercritical temperature range
    Réti, T
    Felde, I
    Gür, H
    14TH CONGRESS OF INTERNATIONAL FEDERATION FOR HEAT TREATMENT AND SURFACE ENGINEERING, VOLS 1 AND 2, PROCEEDINGS, 2004, : 702 - 705
  • [38] The impact of intercritical annealing in conjunction with warm deformation process on microstructure, mechanical properties and TRIP effect in medium-Mn TRIP steels
    Li, Z. C.
    Zhang, X. T.
    Mou, Y. J.
    Misra, R. D. K.
    He, L. F.
    Li, H. P.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 746 : 363 - 371
  • [39] Statistical modeling of laser welding of DP/TRIP steel sheets
    Reisgen, U.
    Schleser, M.
    Mokrov, O.
    Ahmed, E.
    OPTICS AND LASER TECHNOLOGY, 2012, 44 (01): : 92 - 101
  • [40] Heat and thermomechanical treatments of TRIP steels inhomogeneous in concentration
    Antsiferov, V.N.
    Latypov, M.G.
    Shatsov, A.A.
    Metallovedenie i Termicheskaya Obrabotka Metallov, 2002, (09): : 20 - 23