Journal of Northeastern University(Natural Science) ›› 2024, Vol. 45 ›› Issue (4): 483-489.DOI: 10.12068/j.issn.1005-3026.2024.04.004
• Materials & Metallurgy • Previous Articles
Xiao-guang ZHOU, Xin MA, Shan JIANG, Zhen-yu LIU
Received:
2022-11-21
Online:
2024-04-15
Published:
2024-06-26
CLC Number:
Xiao-guang ZHOU, Xin MA, Shan JIANG, Zhen-yu LIU. Ferrite Phase Transformation Model of DP600 Hot Rolled Dual-Phase Steel Under ESP Process[J]. Journal of Northeastern University(Natural Science), 2024, 45(4): 483-489.
C | Si | Mn | P | S | N | Al | Cr |
---|---|---|---|---|---|---|---|
0.06 | 0.46 | 1.42 | 0.004 8 | 0.002 2 | 0.003 7 | 0.035 | 0.38 |
Table 1 Chemical composition of experimental steel (mass fraction)
C | Si | Mn | P | S | N | Al | Cr |
---|---|---|---|---|---|---|---|
0.06 | 0.46 | 1.42 | 0.004 8 | 0.002 2 | 0.003 7 | 0.035 | 0.38 |
温度/℃ | 665 | 700 | 735 | 760 | 790 |
---|---|---|---|---|---|
孕育期/s | 1.32 | 1.56 | 2.28 | 3.90 | 17.94 |
Table 2 Incubation time of ferrite phase transformation
温度/℃ | 665 | 700 | 735 | 760 | 790 |
---|---|---|---|---|---|
孕育期/s | 1.32 | 1.56 | 2.28 | 3.90 | 17.94 |
模型中的参数 | 温度/℃ | |||||
---|---|---|---|---|---|---|
850 | 825 | 800 | 775 | 750 | 725 | |
2.285 2 | 1.547 9 | 1.028 8 | 0.669 | 0.426 6 | 0.265 | |
-0.132 | -2.406 | -5.873 | -10.597 | -16.708 | -24.459 | |
1.223 | 1.221 | 1.220 | 1.218 | 1.216 | 1.215 | |
0.327 | 0.337 | 0.337 | 0.337 | 0.337 | 0.336 | |
220 | 30.5 | 10.5 | 5.5 | 4.02 | 3.49 |
Table 3 Calculation results of incubation time model parameters
模型中的参数 | 温度/℃ | |||||
---|---|---|---|---|---|---|
850 | 825 | 800 | 775 | 750 | 725 | |
2.285 2 | 1.547 9 | 1.028 8 | 0.669 | 0.426 6 | 0.265 | |
-0.132 | -2.406 | -5.873 | -10.597 | -16.708 | -24.459 | |
1.223 | 1.221 | 1.220 | 1.218 | 1.216 | 1.215 | |
0.327 | 0.337 | 0.337 | 0.337 | 0.337 | 0.336 | |
220 | 30.5 | 10.5 | 5.5 | 4.02 | 3.49 |
1 | Degner M, Garbracht K, Lindenberg H U,et al.History of hot strip rolling since 1926[J].Stahl Undsen,2002,122(11):73-84. |
2 | 雷广州,赵华国,孙韶辉.ESP超薄带钢无头轧制设备及工艺流程分析[J].一重技术,2016(4):27-29,54. |
Lei Guang‐zhou, Zhao Hua‐guo, Sun Shao‐hui.ESP super‐thin strip endless rolling equipment & process flow[J].CFHI Technology,2016(4):27-29,54. | |
3 | Saito Y, Shiga C.Computer simulation of microstructural evolution in thermomechanical processing of steel plates[J].ISIJ International,1992,32(3):414-422. |
4 | Militzer M, Hawbolt E B, Meadowcroft T R.Microstructural model for hot strip rolling of high‐strength low‐alloy steels[J].Metallurgical and Materials Transactions A,2000,31(4):1247-1259. |
5 | 刘雪峰,贾涛,朱本强.Nb对奥氏体→铁素体相变动力学影响的模型[J].东北大学学报(自然科学版),2016,37(5):642-646. |
Liu Xue‐feng, Jia Tao, Zhu Ben‐qiang.Modeling the effect of Nb on austenite→ferrite phase transformation kinetics[J].Journal of Northeastern University(Natural Science),2016,37(5):642-646. | |
6 | Capdevila C, Garcı́a de Andrés C, Caballero F G.Incubation time of isothermally transformed allotriomorphic ferrite in medium carbon steels[J].Scripta Materialia,2001,44(1):129-134. |
7 | 许云波,王国栋,刘相华.低碳钢低温变形γ→α相变行为的预测模型[J].金属学报,2002,38(10):1021-1026. |
Xu Yun‐bo, Wang Guo‐dong, Liu Xiang‐hua.Mathematical modelling of ferrite transformation of low carbon steel through low temperature heavy deformation[J].Acta Metallurgica Sinica,2002,38(10):1021-1026. | |
8 | 徐祖耀,牟翊文.Fe-C合金贝氏体相变热力学(KRC模型)[J].金属学报,1985,21(2):13-24. |
Xu Zu‐yao, Mou Yi‐wen.Thermodynamic(KRC model) of the bainitic transformation in Fe‐C alloys[J].Acta Metallurgica Sinica,1985,21(2):13-24. | |
9 | Lange W F, Enomoto M, Aaronson H I.The kinetics of ferrite nucleation at austenite grain boundaries in Fe‐C alloys[J]. Metallurgical Transactions A,1988,19(3):427-440. |
10 | Gómez M, Medina S F, Caruana G.Modelling of phase transformation kinetics by correction of dilatometry results for a ferritic Nb‐microalloyed steel[J].ISIJ International,2003,43(8):1228-1237. |
11 | 王平吉,周晓光,吴迪.连续冷却过程中铁素体相变温度的模拟[J].材料与冶金学报,2006,5(1):57-60. |
Wang Ping‐ji, Zhou Xiao‐guang, Wu Di.Simulation of the ferrite transformation temperature during continuous cooling[J].Journal of Materials and Metallurgy,2006,5(1):57-60. | |
12 | Cahn J W.The kinetics of grain boundary nucleated reaction[J].Acta Metallurgica,1956,4(5):449-459. |
13 | 谢保盛,蔡庆伍,余伟,等.连续冷却过程中X70管线钢的铁素体相变动力学[J].金属热处理,2014,39(3):83-88. |
Xie Bao‑sheng, Cai Qing‑wu, Yu Wei,et al.Ferrite transformation kinetics of X70 pipeline steel during continuous cooling[J].Heat Treatment of Metals,2014,39(3):83-88. | |
14 | Hsu T Y.Additivity hypothesis and effects of stress on phase transformations in steel[J].Current Opinion in Solid State and Materials Science,2005,9(6):256-268. |
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