[1]Zhao J, Kim W Y, Lee H J. Effect of tungsten addition on the mechanical properties and corrosion resistance of S355NL forging steel[J]. Metals and Materials International, 2012, 18(2): 217-223. [2]戈文英. 风电塔筒法兰用S355NL钢的低温冲击韧性[J]. 特殊钢, 2015, 36(5): 47-50. Ge Wenying . Low temperature impact toughness of steel S355NL for wind power tower flange[J]. Special Steel, 2015, 36(5): 47-50. [3]潘中德, 郭甲男, 胡其龙. 正火温度轧制和正火处理的S355NL钢板的力学性能和显微组织[J]. 上海金属, 2022, 44(2): 61-64, 71. Pan Zhongde, Guo Jianan, Hu Qilong. Mechanical and microstructure of S355NL steel plate rolled at normalized temperature and normalized.[J]. Shanghai Metals, 2022, 44(2): 61-64, 71. [4]陈一满, 卢爱凤. S355NL钢低温冲击韧度不合格原因分析[J]. 理化检验(物理分册), 2017, 53(1): 73-76. Chen Yiman, Lu Aifeng. Cause analysis of low-temperature impact toughness disqualification of S355NL steel[J]. Physical Testing and Chemical Analysis (Part A: Physical Testing), 2017, 53(1): 73-76. [5]Li D Z, Wang P, Chen X Q, et al. Low-oxygen rare earth steels[J]. Nature Materials, 2022, 21(10): 1137-1143. [6]Wang L, Lin Q, Yue L, et al. Study of application of rare earth elements in advanced low alloy steels[J]. Journal of Alloys and Compounds, 2007, 451(1): 534-537. [7]安玉乾, 王林珠, 黎玉唐, 等. 稀土铈对夹杂物特征的影响[J]. 宽厚板, 2020, 26(2): 11-17. An Yuqian, Wang Linzhu, Li Yutang, et al. Effects of rare earth cerium on the characteristics of inclusions[J]. Wide and Heavy Plate, 2020, 26(2): 11-17. [8]陈霞文, 王天祥, 李春宏. 混合稀土对 Al-Si-Cu 系合金铸造组织与硬度的影响[J]. 南京理工大学学报, 1997(2): 65-68, 88. Chen Xiawen, Wang Tianxiang, Li Chunhong. Influence of mischmetal to cast structure and hardness of Al-Si-Cu system alloy[J]. Journal of Nanjing University of Science and Technology, 1997(2): 65-68, 88. [9]武 悦, 马 迅, 王 鹏, 等. 稀土在钢中作用的研究进展[J]. 材料热处理学报, 2023, 44(2): 1-12. Wu Yue, Ma Xun, Wang Peng, et al. Research progress of function of rare earths in steel[J]. Transactions of Materials and Heat Treatment, 2023, 44(2): 1-12. [10]Yang C, Luan Y, Li D, et al. Effects of rare earth elements on inclusions and impact toughness of high-carbon chromium bearing steel[J]. Journal of Materials Science Technology, 2019, 35(7): 1298-1308. [11]韩 杰, 王 毅, 刘成宝, 等. 稀土对GCr15轴承钢夹杂物的变质行为分析[J]. 连铸, 2023(2): 70-77. Han Jie, Wang Yi, Liu Chengbao, et al. Analysis on modification behavior of rare earth to inclusions in GCr15 bearing steel[J]. Continuous Casting, 2023(2): 70-77. [12]杨超云, 栾义坤, 李殿中, 等. 稀土元素对高洁净度轴承钢中夹杂物的影响研究[J]. 炼钢, 2016, 32(4): 54-59, 72. Yang Chaoyun, Luan Yikun, Li Dianzhong, et al. Effect of RE on inclusions in highly clean bearing steel[J]. Steelmaking, 2016, 32(4): 54-59, 72. [13]汪艳亮, 王 云, 谢小豪, 等. 稀土硬质合金研究进展[J]. 有色金属科学与工程, 2019, 10(5): 106-112. Wang Yanliang, Wang Yun, Xie Xiaohao, et al. Research progress on rare earth cemented carbide[J]. Nonferrous Metals Science and Engineering, 2019, 10(5):106-112. [14]Zhang S, Yu Y, Wang S, et al. Effects of cerium addition on solidification structure and mechanical properties of 434 ferritic stainless steel[J]. Journal of Rare Earths, 2017, 35(5): 518-524. [15]Cheng S, Guanghong F, Jianguo Z, et al. The effect of rare earth cerium on microstructure and properties of low alloy wear-resistant steel[J]. Metals, 2022, 12(8): 1358-1358. [16]盛 达, 杨守峰, 臧晓云, 等. 稀土对白口铸铁组织和性能的影响[J]. 稀土, 1994(6): 39-43. |