[1]Lentz J, Arne Röttger, Theisen W. Solidification and phase formation of alloys in the hypoeutectic region of the Fe-C-B system[J]. Acta Materialia, 2015, 99: 119-129. [2]Ma Shengqiang, Xing Jiandong, Liu Guofeng, et al. Effect of chromium concentration on microstructure and properties of Fe-3.5B alloy[J]. Materials Science and Engineering: A, 2010, 527(26): 6800-6808. [3]Ozdemir O, Usta M, Bindal C, et al. Hard iron boride (Fe2B) on 99.97wt% pure iron[J]. Vacuum, 2006, 80(11/12): 1391-1395. [4]曾 路, 吴 腾, 吴 润, 等. 冷轧高强双相钢中残留奥氏体的作用[J]. 金属热处理, 2018, 43(10): 1-4. Zeng Lu, Wu Teng, Wu Run, et al. Action of retained austenite in cold rolled high strength dual phase steel[J]. Heat Treatment of Metals, 2018, 43(10): 1-4. [5]李金鑫, 黄兴民, 张 雷, 等. 淬火配分处理对锻态Fe-0.2C-9Mn-3.5Al钢显微组织及力学行为的影响[J]. 金属热处理, 2020, 45(2): 87-93. Li Jinxin, Huang Xingmin, Zhang Lei, et al. Influence of quenching and partitioning treatment on microstructure and mechanical behaviors of forged Fe-0.2C-9Mn-3.5Al steel[J]. Heat Treatment of Metals, 2020, 45(2): 87-93. [6]霍颜秋, 张梦贤, 王海波, 等. 低碳20Mn2SiVB钢贝氏体相变及其TRIP效应[J]. 金属热处理, 2014, 39(10): 72-75. Huo Yanqiu, Zhang Mengxian, Wang Haibo, et al. Bainite transformation and TRIP effect in low carbon 20Mn2SiVB steel[J]. Heat Treatment of Metals, 2014, 39(10): 72-75. [7]Varshney A, Sangal S, Kundu S, et al. Super strong and highly ductile low alloy multiphase steels consisting of bainite, ferrite and retained austenite[J]. Materials and Design, 2016, 95: 75-88. [8]任振全, 田亚强, 李 然, 等. I&Q&P工艺预先Mn配分处理低碳硅锰钢的组织与性能[J]. 金属热处理, 2016, 41(12): 113-116. Ren Zhenquan, Tian Yaqiang, Li Ran, et al. Microstructure and properties of low carbon silicon manganese steel treated by Mn pre-partitioning I&Q&P process[J]. Heat Treatment of Metals, 2016, 41(12): 113-116. [9]于 震, 符寒光, 蒋业华, 等. 铝含量对Fe-Cr-B-Al合金组织性能影响的研究[J]. 材料·工艺, 2012(4): 40-44. Yu Zhen, Fu Hanguang, Jiang Yehua, et al. Effect of aluminum content on solidification microstructure and properties of Fe-Cr-B-Al alloy[J]. Material and Technology, 2012(4): 40-44. |