Analysis of Recrystallization Kinetics Concerning the Experimental, Computational, and Empirical Evaluation of Critical Temperatures for Static Recrystallization in Nb, Ti, and V Microalloyed Steels

被引:2
|
作者
Sobotka, Evelyn [1 ]
Kreyca, Johannes [2 ]
Kahlenberg, Robert [3 ,4 ]
Jacob, Aurelie [1 ]
Kozeschnik, Ernst [4 ]
Povoden-Karadeniz, Erwin [1 ,4 ]
机构
[1] TU Wien, Inst Mat Sci & Technol, Christian Doppler Lab Interfaces & Precip Engn, A-1060 Vienna, Austria
[2] Voestalpine Forschungsservicegesellschaft Donawitz, A-8700 Leoben, Austria
[3] Mat Ctr Leoben Forsch GmbH, A-8700 Leoben, Austria
[4] TU Wien, Inst Mat Sci & Technol, A-1060 Vienna, Austria
关键词
microalloyed steel; microstructural control; precipitation; recrystallization delay; T (NR); T (SRCT); steel properties; INDUCED PRECIPITATION KINETICS; AUSTENITE; STRAIN; MICROSTRUCTURE; STRESS;
D O I
10.3390/met13050884
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recrystallization kinetics and two critical temperatures-the non-recrystallization temperature T-NR and the static recrystallization critical temperature T-SRCT-of five Nb, Ti, and V microalloyed steel grades are evaluated. The experimental examination is realized by employing isothermal double-hit compression tests and continuous hot torsion tests, both performed on a Gleeble((R)) 3800 thermo-mechanical simulator. The experimental results are used for the critical assessment of predicted T-NR using four empirical equations from the literature, and for the validation of simulated T-NR and T-SRCT. The thermokinetic computer simulations are realized using the mean-field microstructure modeling software MatCalc. Analysis shows that higher microalloying contents increase both critical temperatures, T-NR and T-SRCT, whereby the effect of recrystallization retardation of Nb is more pronounced than that of Ti or V. The most accurate reproduction of the experimental recrystallization behavior of the five examined steel grades is realized by the employed physics-based simulation approach.
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页数:21
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