[1]周德光, 傅 杰, 王 平, 等. 高质量轴承钢的生产技术[J]. 中国冶金, 2000(6): 17-20. [2]邓素怀, 王远方, 张慧峰, 等. GCr15轴承钢热轧态组织形态对最终热处理后碳化物的影响[J]. 金属热处理, 2014, 39(5): 40-43. Deng Suhuai, Wang Yuanfang, Zhang Huifeng, et al. Effect of hot rolled microstructural morphology on carbides of bearing steel after final heat treatment[J]. Heat Treatment of Metals, 2014, 39(5): 40-43. [3]Li L, Yang W, Sun Z. Microstructure evolution of apearlitic steel during hot deformation of undercooled austenite and subsequent annealing[J].Metallurgical and Materials Transactions A, 2008, 39(3): 624-635. [4]Yi H L, Hou Z Y, Xu Y B, et al. Acceleration of spheroidization in eutectoid steels by the addition of aluminum[J]. Scripta Materialia, 2012, 67(7/8): 645-648. [5]Saha A, Mondal D K, Biswas K, et al. Microstructural modifications and changes in mechanical properties during cyclic heat treatment of 0.16% carbon steel[J]. Materials Science and Engineering A, 2012, 534: 465-475. [6]Saha A, Mondal D K, Maity J. Effect of cyclic heat treatment on microstructure and mechanical properties of 0.6wt% carbon steel[J].Materials Science and Engineering A, 2010, 527(16/17): 4001-4007. [7]Saha A, Mondal D K, Biswas K, et al. Development of high strength ductile hypereutectoid steel by cyclic heat treatment process[J].Materials Science and Engineering A, 2012, 541: 204-215. [8]孙忠继. 磁场热处理及其应用和发展前景[J]. 热处理, 2004, 19(4): 17-19. Sun Zhongji. Magnetic heat treatment and its prospects in applications and development[J]. Heat Treatment, 2004, 19(4): 17-19. [9]刘立华. 脉冲磁场对取向硅钢初次再结晶组织织构的影响[D]. 上海: 上海大学, 2013. Liu Lihua. Effect of pulsed magnetic field on microstructure and texture of grain-oriented silicon steel during primary recrystallization Process[D]. Shanghai: Shanghai University, 2013. [10]张善庆. 软磁合金真空精密磁场热处理工艺研究(上)[J].机械工人(热加工), 2006(4): 27-30. [11]张善庆. 软磁合金真空精密磁场热处理工艺研究(下)[J].机械工人(热加工), 2006(5): 52-54. [12]王 奇, 李晓源, 时 捷, 等. 等温球化退火温度对高碳钢组织的影响[J]. 金属热处理, 2016, 41(11): 88-92. Wang Qi, Li Xiaoyuan, Shi Jie, et al. Effect of isothermal spheroidizing annealing temperature on microstructure of high carbon steel[J]. Heat Treatment of Metals, 2016, 41(11): 88-92.[13]陈其伟, 关建辉, 朱国辉, 等. GCr15钢快速球化中离异共析转变临界过冷度的物理模型[J]. 材料热处理学报, 2013, 34(4): 182-186. Chen Qiwei, Guan Jianhui, Zhu Guohui, et al. Physical model for critical undercooling of divorced eutectoid transformation in fast spheroidization annealing of GCr15 steel[J]. Transactions of Materials and Heat Treatment, 2013, 34(4): 182-186. [14]宫明龙. 强磁场对Fe-C相图及高碳钢显微组织的影响[D]. 沈阳: 东北大学, 2008. Gong Minglong. Effects of high magnetic field on Fe-C phase diagram and microstructure of high-carbon steel[D]. Shenyang: Northeastern University, 2008. [15]Liu X J, Lu Y, Fang Y M, et al. Effects of external magnetic field on the diffusion coefficient and kinetics of phase transformation in pure Fe and Fe-C alloys[J].Calphad, 2011, 35(1): 66-71. [16]Morikawa H, Sassa K, Asai S. Control of precipitating phase alignment and crystal orientation by imposition of a high magnetic field[J]. Materials Transactions, JIM, 1998, 39(8): 814-818. |