[1]戴起勋. 金属材料学[M]. 北京: 化学工业出版社, 2011: 134-138. [2]Takuro M, Toshihiro T, Setsuo T, et al. Difference between carbon and nitrogen in thermal stability of metastable 18%Cr-8%Ni austenite[J]. Scripta Materialia, 2018, 154: 8-11. [3]Zhang Y, Li M, Bi H, et al. Martensite transformation behavior and mechanical properties of cold-rolled metastable Cr-Mn-Ni-N austenitic stainless steels[J]. Materials Science and Engineering: A, 2018, 724: 411-420. [4]Liu J, Chen C, Feng Q, et al. Dislocation activities at the martensite phase transformation interface in metastable austenitic stainless steel: An in-situ TEM study[J]. Materials Science and Engineering: A, 2017, 703: 236-243. [5]Talonen J, Hnninen H. Formation of shear bands and strain-induced martensite during plastic deformation of metastable austenitic stainless steels[J]. Acta Materialia, 2007, 55: 6108-6118. [6]Rezaee A, Kermanpur A, Najafizadeh A, et al. Investigation of cold rolling variables on the formation of strain-induced martensite in 201L stainless steel[J]. Materials and Design, 2013, 46: 49-53. [7]Misra R, Br K, Somani M, et al. Deformation processes during tensile straining of ultrafine/nanograined structures formed by reversion in metastable austenitic steels[J]. Scripta Materialia, 2008, 59: 79-82. [8]田亚强, 田 耕, 郑小平, 等. C、Mn元素对淬火配分贝氏体钢残留奥氏体稳定性的影响[J]. 金属热处理, 2019, 44(7): 112-116. Tian Yaqiang, Tian Geng, Zheng Xiaoping, et al. Influence of C and Mn elements on stability of retained austenite in quenching and partitioning bainitic steel[J]. Heat Treatment of Metals, 2019, 44(7): 112-116. [9]Rizzo F, Martins A R, Speer J G. Quenching and partitioning of Ni-added high strength steel[J]. Materials Science Forum, 2007, 539: 4476-4481. [10]Matlock D K, Brautigam V E, Speer J G. Application of the quenching and partitioning (Q-P) process to a medium-carbon high Si micro-alloyed bar steel[J]. Materials Science Forum, 2003, 426: 1089-1094. [11]Bhadeshia H K D H. Bainite in Steel[M]. London: Institute of Materials, Minerals and Mining, 1992. [12]徐祖耀, 李学敏. 低碳马氏体形成时碳的扩散[J]. 金属学报, 1983, 19(6): 51-56. Xu Zuyao, Li Xuemin. Diffusion of carbon during the formation of low-carbon martensite[J]. Acta Metallurgica Sinica, 1983, 19(6): 51-56. [13]Speer J G, Matlock D K, Cooman B C D, et al. Carbon partitioning into austenite after martensite transformation[J]. Acta Materialia, 2003, 51(9): 2611-2622. [14]解西强. Q&P工艺获得的新型马氏体钢微观组织及性能研究[D]. 昆明: 昆明理工大学, 2008. [15]王存宇, 时 捷, 刘 苏, 等. Q-P(-T)工艺对35Si2Ni2钢组织和力学性能的影响[J]. 钢铁, 2010(1): 79-82. Wang Cunyu, Shi Jie, Liu Su, et al. Effect of Q-P(-T) process on microstructure and mechanical properties of 35Si2Ni2 steel[J]. Iron and Steel, 2010(1): 79-82. |