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金属学报  2010, Vol. 46 Issue (7): 838-843    DOI: 10.3724/SP.J.1037.2009.00858
  论文 本期目录 | 过刊浏览 |
Nb, Ti和V对含Nb微合金钢热变形行为的影响
吴晋彬1), 刘国权1, 2), 王浩1)
1) 北京科技大学材料科学与工程学院, 北京 100083
2) 北京科技大学新金属材料国家重点实验室, 北京 100083
EFFECT OF Nb, Ti AND V ON THE HOT DEFORMATION BEHAVIOR OF LOW CARBON Nb MICROALLOYED STEELS
WU Jinbin1), LIU Guoquan1, 2),  WANG Hao1)
1) School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083
2) State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083
引用本文:

吴晋彬 刘国权 王浩. Nb, Ti和V对含Nb微合金钢热变形行为的影响[J]. 金属学报, 2010, 46(7): 838-843.
, , . EFFECT OF Nb, Ti AND V ON THE HOT DEFORMATION BEHAVIOR OF LOW CARBON Nb MICROALLOYED STEELS[J]. Acta Metall Sin, 2010, 46(7): 838-843.

全文: PDF(910 KB)  
摘要: 

基于Nb, Ti和V含量不同的6种低碳含Nb微合金钢的热模拟实验数据, 利用硬化速率-应力(θ-σ)曲线, 准确确定了其发生动态再结晶的临界应变εc、峰值应变εp、临界应力σc、峰值应力σp和稳态应力σss值. 结果表明, 峰值应力σp随Nb, Ti和V含量的增加而增大, 6种实验钢发生动态再结晶的εc/εp的取值范围为0.50-0.65. 采用σ-ε曲线法计算获得了动态再结晶的Avrami动力学曲线, 与采用金相方法得到的动态再结晶动力学曲线比较接近. 随着钢中Nb和Ti含量增加, 动态再结晶的Avrami动力学曲线右移; Nb微合金钢中复合添加Ti和V则导致在更低的应变速率下才能发生动态再结晶.

关键词 Nb, Ti, V, 低碳含Nb微合金钢动态再结晶动力学Avrami动力学曲线    
Abstract

The characteristic values such as critical strain εc, peak strain εp, critical stress σc, peak stress σp and steady-state stress σss were obtained from work-hardening rate-flow stress (θ-σ) curves based on the thermal/mechanical simulation data of 6 microalloyed steels with different contents of Nb, Ti and V. The results show that the peak stress σp was raised with the increasing contents of Nb, Ti and V, while the εc/εp value for all the experimental steels are in the range of 0.50-0.65. Then the Avrami kinetic curves of dynamic recrystallization were calculated from σ-ε curves for the 6 steels, which are very similar to those curves obtained by metallographic methods. With the increase of content of Nb and Ti, the corresponding Avrami curve shifted to the right and the dynamic recrystallization kinetics were hindered; while simultaneously adding Ti and V into Nb microalloyed steel would lead to the dynamic recrystallization to be initiated at much lower strain rate.

Key wordsNb, Ti, V, low carbon Nb microalloyed steel    dynamic recrystallization kinetics    Avrami kinetics curve
收稿日期: 2009-12-23     
基金资助:

国家科技基础条件平台建设项目-材料科学数据共享网和VANITEC(钢国际技术委员会)资助

作者简介: 吴晋彬, 女, 1972年生, 高级工程师, 博士生

[1] G´omez M, Medina S F, Quispe A, Valles P. ISIJ Int, 2002; 42: 423
[2] Laasraoui A, Jonas J J. Metall Mater Trans, 1991; 122A: 1545
[3] Pussegoda L N, Jonas J J. ISIJ Int, 1991; 31: 278
[4] Medina S F, Mancilia J E. ISIJ Int, 1993; 33: 1257
[5] Zhou X G, Liu Z Y, Wu D, Wang G D, Liu X H. Acta Metall Sin, 2008; 44: 1188
(周晓光, 刘振宇, 吴迪, 王国栋, 刘相华. 金属学报, 2008; 44: 1188)
[6] Jonas J J, Quelennec X, Jiang L, E’tienne M. Acta Mater, 2009; 57: 2748
[7] Poliak E I, Jonas J J. Acta Mater, 1996; 44: 127
[8] Mcqueen H J, Ryan N D. Mater Sci Eng, 2002; A322: 43
[9] Liu L B. Master Thesis, University of Science and Technology Beijing, 2006
(刘李斌. 北京科技大学硕士学位论文, 2006)
[10] Shi B H. Master Thesis, University of Science and Technology Beijing, 2004
(史秉华. 北京科技大学硕士学位论文, 2004)
[11] Yi H L, Du L X, Wang G D, Liu X H. J Northeastern University, 2007; 28: 1369
(衣海龙, 杜林秀, 王国栋, 刘相华. 东北大学学报, 2007; 28: 1369)
[12] Yong Q L. The Second Phase in Steel. Beijing: Metallurgical Industry Press, 2006: 146
(雍岐龙. 钢铁材料中的第二相. 北京:  冶金工业出版社, 2006: 146)
[13] Wu J B, Liu G Q, Wang C Y, Xu Lei, Wang H. Mater Sci Technol, to be published
[14] Estrin Y, Mecking H. Acta Metall, 1984; 32: 57
[15] Zrn´?k J, Kvackaj T, Pongpaybul A, Sricharoenchai P, Vilk J, Vrchovinsky V. Mater Sci Eng, 2001; A319–321: 321
[16] Gao W L, Bai G R, Zhou Z M. Acta Metall Sin, 1992; 28A: 351
(高维林, 白光润, 周志敏. 金属学报, 1992; 28A: 351)
[17] Akben M G, Bacroix B, Jonas J J. Acta Metall, 1983; 31: 161
[18] Medina S F, Mancilla J E. ISIJ Int, 1996; 36: 1063
[19] Qi J J, Huang Y H, Zhang Y. Microalloyed Steel. Beijing: Metallurgical Industry Press, 2006: 24
(齐俊杰, 黄运华, 张跃. 微合金化钢. 北京: 冶金工业出版社, 2006: 24)
[20] Zhang L W, Lu Y, Deng X H, Pei J B, Zhang G L. J Dalian Univ Technol, 2008; 48: 351
(张立文, 卢瑜, 邓小虎, 裴继斌, 张国梁. 大连理工大学学报, 2008; 48: 351)
[21] Xu W C, Ma X, Sun F Y, Zong G S. Acta Metall Sin, 1988; 24: 392
(徐温崇, 马翔, 孙福玉, 宗贵升. 金属学报, 1988; 24: 392)
[22] Mekkawy F, Fawakhry K A, Mishreky M L. Scand J Metall, 1990; 19: 236

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