[1]王 权, 孙婷婷, 白雅琼. 冷却速度对超低碳微合金钢组织和性能的影响[J]. 金属热处理, 2015, 40(2): 148-151. Wang Quan, Sun Tingting, Bai Yaqiong. Effect of cooling rate on microstructure and mechanical properties of ultra-low carbon micro-alloyed steel[J]. Heat Treatment of Metals, 2015, 40(2): 148-151. [2]Hu X, Xie L, Gao F, et al. On the development of material constitutive model for 45CrNiMoVA ultra-high-strength steel[J]. Metals, 2019, 9(3): 374. [3]王世凯, 王 睿, 康 燕, 等. 淬火温度对Cr5MoVNi钢组织和性能的影响[J]. 金属热处理, 2022, 47(9): 125-130. Wang Shikai, Wang Rui, Kang Yan, et al. Effect of quenching temperature on microstructure and properties of Cr5MoVNi steel[J]. Heat Treatment of Metals, 2022, 47(9): 125-130. [4]刘 坤. 一种Cr-Mo-V-Ni高强钢组织和力学性能研究[D]. 太原: 太原科技大学, 2019. Liu Kun. Research on microstructure and mechanical properties of a Cr-Mo-V-Ni high strength steel[D]. Taiyuan: Taiyuan University of Science and Technology, 2019. [5]Feng X W, Xie J, Xue W Y, et al. Microstructure and nanoindentation hardness of shot-peened ultrafine-grained low-alloy steel[J]. Journal of Iron and Steel Research International, 2019, 26: 472-482. [6]栾晓圣, 梁志强, 赵文祥, 等. 组织状态对45CrNiMoVA钢超声滚压表面完整性的影响[J]. 中国表面工程, 2021, 34(4): 74-81. Luan Xiaosheng, Liang Zhiqiang, Zhao Wenxiang, et al. Effect of microstructure on surface integrity of 45CrNiMoVA steel by ultrasonic surface rolling process[J]. China Surface Engineering, 2021, 34(4): 74-81. [7]苏 震, 孙 林, 张晓华, 等. 回火工艺对45CrNiMoVA微观组织及力学性能的影响[J]. 新技术新工艺, 2019(12): 21-24. Su Zhen, Sun Lin, Zhang Xiaohua, et al. Effect of tempering process on microstructure and mechanical properties of 45CrNiMoVA[J]. New Technology and New Process, 2019(12): 21-24. [8]吕晓春, 李玉海, 王跃旗, 等. 热处理温度对45CrNiMoVA钢性能的影响[J]. 理化检验: 物理分册, 2007, 43(5): 221-223. Lü Xiaochun, Li Yuhai, Wang Yueqi, et al. The influence of heat treatment temperature on 45CrNiMoVA steel properties[J]. Physical Testing and Chemical Analysis Part A: Physical Testing, 2007, 43(5): 221-223. [9]徐 盛, 刘雅政, 周乐育, 等. 热处理对45CrNiMoV钢析出相和力学性能影响[J]. 材料热处理学报, 2014, 35(3): 127-132. Xu Sheng, Liu Yazheng, Zhou Leyu, et al. Effect of heat treatment on precipitate and mechanical properties of 45CrNiMoV steel[J]. Transactions of Materials and Heat Treatment, 2014, 35(3): 127-132. [10]赵 楠, 穆海玲, 周丽萍, 等. 冷却速度及冷却方式对SM490A钢组织转变及性能的影响[J]. 金属热处理, 2010, 35(5): 59-62. Zhao Nan, Mu Hailing, Zhou Liping, et al. Effect of cooling rate on phase transformation and properties of SM490A steel[J]. Heat Treatment of Metals, 2010, 35(5): 59-62. [11]孙永真, 程巨强, 李玫萱. 冷却工艺对40CrMoNbVTi钢组织和性能的影响[J]. 金属热处理, 2022, 47(12): 74-77. Sun Yongzhen, Cheng Juqiang, Li Meixuan. Effect of cooling process on microstructure and properties of 40CrMoNbVTi steel[J]. Heat Treatment of Metals, 2022, 47(12): 74-77. [12]李金波, 吴红艳, 高秀华, 等. 热处理工艺对高铁耐蚀60Si2Mn弹簧钢组织和性能的影响[J]. 金属热处理, 2022, 47(8): 135-140. Li Jinbo, Wu Hongyan, Gao Xiuhua, et al. Influence of heat treatment process on microstructure and mechanical properties of corrosion resistant 60Si2Mn spring steel for high-speed railway[J]. Heat Treatment of Metals, 2022, 47(8): 135-140. |