[1]吕祥鸿, 赵国仙, 张建兵, 等. 超级13Cr马氏体不锈钢在CO2及H2S/CO2环境中的腐蚀行为[J]. 北京科技大学学报, 2010, 32(2): 208-212. Lü Xianghong, Zhao Guoxian, Zhang Jianbing, et al. Corrosion behaviors of super 13Cr martensitic stainless steel under CO2 and H2S/CO2 environment[J]. Journal of University of Science and Technology Beijing, 2010, 32(2): 208-212. [2]高建忠. 我国石油管材国产化回顾与思考[J]. 石油管材与仪器, 2021, 7(2): 1-8, 14. Gao Jianzhong. Retrospect and experiences of petroleum tubular goods localization[J]. Petroleum Tubular Goods & Instruments, 2021, 7(2): 1-8, 14. [3]Kermani M B, Gonzales J C, Turconi G L, et al. Development of superior corrosion resistance 3%Cr steels for downhole applications[C]//Corrosion. Houston, 2003: 03116. [4]Bosch C, Jansen J P, Poepperling R K. Influence of chromium contents of 0.5 to 1.0% on the corrosion behavior of low alloy steel for large-diameter pipes in CO2 containing aqueous media[C]//Corrosion. Houston, 2003: 03118. [5]王吉连. Cr3钢在含CO2/H2S介质中腐蚀研究[D]. 北京: 北京化工大学, 2010. Wang Jilian. The corrosion research of Cr3 steel in solutions containing CO2 and H2S[D]. Beijing: Beijing University of Chemical Technology, 2010. [6]冯耀荣, 李鹤林, 徐 婷, 等. 我国油井管标准化技术进展及展望[J]. 石油管材与仪器, 2021, 7(3): 1-6. Feng Yaorong, Li Helin, Xu Ting, et al. Progress and prospect of standardization technology for oil country tubular goods in China[J]. Petroleum Tubular Goods & Instruments, 2021, 7(3): 1-6. [7]王雅静, 刘宗昌, 段宝玉. H13钢淬火-回火工艺及组织的研究[J]. 热处理, 2013, 28(4): 26-31. Wang Yajing, Liu Zongchang, Duan Baoyu. Quenching and tempering processes and microstructure of H13 steel[J]. Heat Treatment, 2013, 28(4): 26-31. [8]胡心彬, 李 麟, 吴晓春. 4Cr5MoSiV1热作模具钢热疲劳中碳化物粗化动力学分析[J]. 材料热处理学报, 2005, 26(1): 57-61. Hu Xinbin, Li Lin, Wu Xiaochun. Coarsening kinetics of carbides in 4Cr5MoSiV1 hot work tool steel during thermal fatigue[J]. Transactions of Materials and Heat Treatment, 2005, 26(1): 57-61. [9]刘 晓, 马利飞, 李运刚. 稀土镧和铈对双相不锈钢耐腐蚀性能的影响[J]. 材料热处理学报, 2016, 37(1): 112-118. Liu Xiao, Ma Lifei, Li Yungang. Effect of La and Ce on corrosion resistance of duplex stainless steel[J]. Transactions of Materials and Heat Treatment, 2016, 37(1): 112-118. [10]王丽妍. 包钢含稀土耐腐蚀油井管L80-9Cr钢种研究[D]. 包头: 内蒙古科技大学, 2021. Wang Liyan. Study on L80-9Cr steel containing rare earth in baotou steel union Co., Ltd. used for corrosion-resistant oil well pipe[D]. Baotou: Inner Mongolia University of Science & Technology, 2021. [11]廖 波. 稀土对 60CrMnMo 钢奥氏体长大动力学的影响[J]. 中国稀土学报, 1998, 16(3): 1-5. Liao Bo. Effect of rare earth on Austenite growth kinetics of 60CrMnMo steel[J]. Journal of Rare Earths, 1998, 16(3): 1-5. [12]Lin Q, Liu A S, Ye W. Behaviour of rare earths in solid solution in steel[J]. Journal of Materials Science & Technology, 1997, 6: 415-420. [13]Xu Z M. Influence of Ce and Al on nodularization of eutectic in austenite-bainite steel[J]. Materials Research Bulletin, 2000, 35(8): 1261-1268. [14]Yu Z S. Research on the application of rare earths in iron and steel in recent years[J]. Journal of Rare Earths, 1990, 8(2): 139-148. [15]王 磊, 路昊青, 张宝燕, 等. 热处理工艺调控9CrV钢显微组织及力学性能[J]. 材料热处理学报, 2021, 42(11): 69-76. Wang Lei, Lu Haoqing, Zhang Baoyan, et al. Microstructure and mechanical properties of 9CrV steel controlled by heat treatment process[J]. Transactions of Materials and Heat Treatment, 2021, 42(11): 69-76. [16]郭铁波. 稀土对9Cr2Mo钢抗回火能力的影响[J]. 哈尔滨理工大学学报, 1999(5): 98-101. Guo Tiebo. Effect of rare earth on tempering resistance of 9Cr2Mo steel[J]. Journal of Harbin University of Science and Technology, 1999(5): 98-101. |