|
|
含δ 铁素体Mn-Al系TRIP钢冷轧退火过程的组织性能 |
胡智评1, 许云波1( ), 刘慧2, 王乐2 |
1 东北大学轧制技术及连轧自动化国家重点实验室 沈阳 110819; 2 山东钢铁股份有限公司钢铁研究院 济南 250101; |
|
Microstructure Evolution and Mechanical Properties of Cold-rolled Mn-Al TRIP Steel with δ Ferrite |
Zhiping HU1, Yunbo XU1( ), Hui LIU2, Le WANG2 |
1 State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China; 2 Research Instituteof Iron and Steel of Shandong Iron and Steel Group, Jinan 250101, China; |
引用本文:
胡智评, 许云波, 刘慧, 王乐. 含δ 铁素体Mn-Al系TRIP钢冷轧退火过程的组织性能[J]. 材料研究学报, 2018, 32(3): 177-183.
Zhiping HU,
Yunbo XU,
Hui LIU,
Le WANG.
Microstructure Evolution and Mechanical Properties of Cold-rolled Mn-Al TRIP Steel with δ Ferrite[J]. Chinese Journal of Materials Research, 2018, 32(3): 177-183.
[1] | Dong H, Cao W Q, Shi J, et al.Microstructure and Performance Control Technology of the 3rd Generation Auto Sheet Steels[J]. Iron & Steel, 2011, 46(6): 1(董瀚, 曹文全, 时捷等. 第3代汽车钢的组织与性能调控技术[J]. 钢铁, 2011, 46(6): 1) | [2] | Cao J L, Zhao A M, Li Z, et al.Mechanism of strengthening and plasticity improvement in warm rolling medium manganese steel with ultrafine grains[J]. J Univ Sci Technol B, 2013, 35(11): 1465 | [3] | Zhao Z Z, Yin H X, Zhao A M, et al.Effect of continuous annealing process on microstructure and mechanical properties of 5% Mn ultrafine grain TRIP steel[J]. Mater. Sci. Technol., 2014, 22(5): 54 | [4] | Zhan W, Hu J, Xu G F, et al.Effect of ART-annealing on microstructure and mechanical properties of continuous casting billet[J]. Iron & Steel, 2013, 48(3): 66(占炜, 胡俊, 徐国富等. 逆相变退火对连铸坯组织和力学性能的影响[J], 钢铁, 2013, 48(3): 66) | [5] | Seawoong L, Seok J L, DeCooman B C. Austenite stability of ultrafine grained transformation-induced plasticity steel with Mn partitioning[J]. Scripta Mater., 2011, 65(3): 225 | [6] | Gibbs P J, DeCooman B C, Brown D W, et al. Strain partitioning in ultra-fine grained medium-manganese transformation induced plasticity steel[J]. Mater. Sci. Eng., A, 2014, 609(15): 323 | [7] | Sohn S S, Lee B J, Lee S, et al.Effect of annealing temperature on microstructural modification and tensile properties in 0.35 C-3.5 Mn-5.8 Al lightweight steel[J]. Acta Mater., 2013, 61(13): 5050 | [8] | Park S J, Hwang B, Lee K H, et al.Microstructure and tensile behavior of duplex low-density steel containing 5 mass% aluminum[J]. Scripta Mater., 2013, 68(6): 36 | [9] | Lee S, Lee S J, DeCooman B C, Reply to comments on “Austenite stability of ultrafine-grained transformation-induced plasticity steel with Mn partitioning”[J]. Scripta Mater., 2012, 66(10): 832 | [10] | Enloe C M, Findley K O, Parish C M, et al.Compositional evolution of microalloy carbonitrides in a Mo-bearing microalloyed steel[J]. Scripta Mater., 2013, 68(1): 55 | [11] | Zhao H, Shi J, Li N, et al.Effects of Si on the Microstructure and Mechanical Property of Medium Mn Steel Treated by Quenching and Partiontion Process[J]. Chin J Mater Res, 2011, 25(1): 45(赵晖, 时捷, 李楠等. Si对中锰钢淬火配分组织和性能的影响[J]. 材料研究学报, 2011, 25(1): 45) | [12] | R. Wei, Enomoto M, Hadian R, et al. Growth of austenite from as-quenched martensite during intercritical annealing in an Fe-0.1C-3Mn-1.5Si alloy[J]. Acta Mater., 2013, 61(2), 697 | [13] | Xie J P, Wang A Q, Wang W Y, et al.Microstructural investigation of cast medium-manganese austenitic steel with composite surface[J]. Mater. Sci. Eng., A, 2008, 743(15): 483 | [14] | Zhang R, Cao W Q, Peng Z J, et al.Intercritical rolling induced ultrafine microstructure and excellent mechanical properties of the medium-Mn steel[J]. Mater. Sci. Eng., A, 2013, 583(42): 84 | [15] | Yi H L, Lee K Y, Bhadeshia H K D H. Mechanical stabilisation of retained austenite in δ-TRIP steel[J]. Mater. Sci. Eng., A, 2011, 528(18): 5900 | [16] | Cai Z H, Ding H, Misra R D K, et al. Unique impact of ferrite in influencing austenite stability and deformation behavior in a hot-rolled Fe-Mn-Al-C steel[J]. Mater. Sci. Eng., A, 2012, 26(12): 378 | [17] | Cao W Q, Wang C, Shi J, et al.Microstructure and mechanical properties of Fe-0.2C-5Mn steel processed by ART-annealing[J]. Mater. Sci. Eng., A, 2011, 528(22-23): 6661 | [18] | Santofimia M J, Zhao J, Petrov P, et al.Microstructural development during the quenching and partitioning process in a newly designed low-carbon steel[J]. Acta Mater., 2011, 59(15): 6059 |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|