[1]邹 扬, 高悦敏, 张苏渊, 等. 形变组织对水电用高强度贝氏体钢再加热奥氏体晶粒长大的影响[J]. 金属热处理, 2023, 48(3): 151-158. Zou Yang, Gao Yuemin, Zhang Suyuan, et al. Effect of deformation microstructure on reheating austenite grain growth of high strength bainite steel for hydropower[J]. Heat Treatment of Metals, 2023, 48(3): 151 -158. [2]Sabooni S, Rashtchi H, Eslami A, et al. Dependence of corrosion properties of AISI 304L stainless steel on the austenite grain size[J]. International Journal of Materials Research, 2017, 108(7): 552-559. [3]李昌义, 王 行, 王爱琴, 等. 大型奥氏体不锈钢锻件的晶粒尺寸控制[J]. 锻压技术, 2022, 47(8): 22-28. Li Changyi, Wang Hang, Wang Aiqin, et al. Grain size control for large austenitic stainless steel forgings[J]. Forging and Stamping Technology, 2022, 47(8): 22-28. [4]Zhu K Y, Magar C, Huang M X. Abnormal relationship between Ms temperature and prior austenite grain size in Al-alloyed steels[J]. Scripta Materialia, 2017, 134: 11-14. [5]Coletti R, Di S A, Mengaroni S, et al. Austenitic grain size effect on the phase transformation of a 7.0%Cr steel for forging[J]. Materials Science Forum, 2021, 5994: 77-81. [6]张 颖, 孙小巍, 宁安刚, 等. Q460GJD钢在多向锻造后热处理过程中的奥氏体晶粒长大行为[J]. 机械工程材料, 2022, 46(10): 44-48, 55. Zhang Ying, Sun Xiaowei, Ning Angang, et al. Austenite grain growth behavior of Q460GJD steel during heat treatment after multidirectional forging[J]. Materials for Mechanical Engineering, 2022, 46(10): 44-48, 55. [7]Dong L F, Zhong Y X, Zhong Q X, et al. Dynamic recrystallization and grain growth behavior of 20SiMn low carbon alloy steel[J]. Tsinghua Science and Technology, 2008, 13(5): 609-613. [8]Xu D, Zheng B, Wang H L, et al. Static recrystallization behavior of SCM435 steel[J]. Journal of Donghua University, 2015, 32 (5): 720-724. [9]Xu D, Ji C, Zhao H Y, et al. A new study on the growth behavior of austenite grains during heating processes[J]. Scientific Reports, 2017, 7(1): 3968. [10]Xu D, Zheng B, Zhu M Y, et al. Evolution of dynamically recrystallized grains in steel SCM435[J]. Metallurgist, 2015, 59(7/8): 677-683. [11]赵 杰, 万响亮, 柯 睿, 等. 晶粒细化对奥氏体不锈钢高温力学性能的影响[j]. 钢铁研究学报, 2023, 35(1): 88-97. Zhao Jie, Wan Xiangliang, Ke Rui, et al. Effect of grain refinement on mechanical properties of austenitic stainless steels at high temperature[J]. Journal of Iron and Steel Research, 2023, 35(1): 88-97. [12]闫洞旭. HRB400螺纹钢奥氏体晶粒细化的实验研究[D]. 苏州: 苏州大学, 2021. Yan Dongxu. Experimental research of austenite grain refinement of HRB400 rebars[D]. Suzhou: Soochow University, 2021. [13]张子寒. 晶粒细化及轧制对导线用1070Al组织及性能影响研究[D]. 北京: 华北电力大学, 2021. Zhang Zihan. Research on the influence of grain refinement and rolling on the microstructure and properties of 1070Al for wire[D]. Beijing: North China Electric Power University, 2021. [14]Zhang S S, Li M Q, Liu Y G, et al. The growth behavior of austenite grain in the heating process of 300M steel[J]. Materials Science and Engineering: A, 2011, 528(15): 4967-4972. [15]Herbst S, Besserer H B, Grydin O, et al. Holistic consideration of grain growth behavior of tempering steel 34CrNiMo6 during heating processes[J]. Journal of Materials Processing Technology, 2016, 229: 61-71. [16]Ji G, Gao X H, Liu Z G, et al. In situ observation and modeling of austenite grain growth in a Nb-Ti-bearing high carbon steel[J]. Journal of Iron and Steel Research International, 2019, 26(3): 292-300. [17]Kofi A A, Charles W S, Waldo E S. Austenite grain growth kinetics after isothermal deformation in microalloyed steels with varying Nb concentrations[J]. ISIJ International, 2018, 58(2): 333-339. [18]Gao Q Z, Qu F, Zhang H L, et al. Austenite grain growth in alumina-forming austenitic steel[J]. Journal of Materials Research, 2016, 31(12): 1810-1811. [19]吴 跃. Super304H耐热钢时效过程中的奥氏体晶粒长大及力学性能[J]. 金属热处理, 2023, 48(1): 105-111. Wu Yue. Austenite grain growth and mechanical properties of Super304H heat-resistant steel during aging process[J]. Heat Treatment of Metals, 2023, 48(1): 105-111. [20]陈建文, 袁伍丰, 蒋亦舟, 等. 锻造加热温度对20Cr2Ni4A钢奥氏体晶粒长大及力学性能的影响[J]. 金属热处理, 2022, 47(2): 112-118. Chen Jianwen, Yuan Wufeng, Jiang Yizhou, et al. Effect of forging heating temperature on austenite grain growth and mechanical properties of 20Cr2Ni4A steel[J]. Heat Treatment of Metals, 2022, 47(2): 112-118. [21]杨 劼, 任慧平, 刘宗昌. 15Cr12CuSiMoMn钢的奥氏体晶粒长大动力学[J]. 金属热处理, 2022, 47(2): 53-58. Yang Jie, Ren Huiping, Liu Zongchang. Kinetics of austenite grain growth of 15Cr12CuSiMoMn steel[J]. Heat Treatment of Metals, 2022, 47(2): 53-58. [22]张学忠, 刘建生, 何文武, 等. 加热工艺参数对12%Cr钢晶粒长大行为的影响[J]. 金属热处理, 2020, 45(9): 77-80. Zhang Xuezhong, Liu Jiansheng, He Wenwu, et al. Effect of heating parameters on grain growth behavior of 12%Cr steel[J]. Heat Treatment of Metals, 2020, 45(9): 77-80. |