[1]杨素宝, 刘正东, 程世长. 超超临界火电机组用关键锅炉钢性能分析[J]. 钢铁研究学报, 2010, 22(1): 37-42. Yang Subao, Liu Zhengdong, Cheng Shichang. Property analysis of key boiler steels used for ultra-supercritical power plants[J]. Journal of Iron and Steel Research, 2010, 22(1): 37-42. [2]刘正东, 程世长, 包汉生, 等. 超超临界火电机组用锅炉钢技术国产化问题[J]. 钢铁, 2009, 44(6): 1-7. Liu Zhengdong, Cheng Shichang, Bao Hansheng, et al. Localization of boiler steel technology in China used for ultra super critical power plants[J]. Iron and Steel, 2009, 44(6): 1-7. [3]石如星. 超超临界火电机组用P92钢组织性能优化研究[D]. 北京: 钢铁研究总院, 2011. [4]姜运建, 张文建, 李文彬. Laves相和Z相对P92钢蠕变的影响[J]. 热力发电, 2009, 38(8): 55-58. Jiang Yunjian, Zhang Wenjian, Li Wenbin. Influence of Laves phase and Z-phase upon creep of P92 steel[J]. Thermal Power Generation, 2009, 38(8): 55-58. [5]严 鹏. 新型马氏体耐热钢G115的组织与性能研究[D]. 北京: 清华大学, 2014. [6]刘阿娇. G115 马氏体耐热钢铸钢的组织与性能研究[D]. 西安: 西安建筑科技大学, 2019. [7]徐 洲, 赵连城. 金属固态相变原理[M]. 北京: 科学出版社, 2004. [8]Prat O, Garcia J, Rojas D, et al. Investigations on coarsening of MX and M23C6 precipitates in 12%Cr creep resistant steels assisted by computational thermodynamics[J]. Materials Science and Engineering A, 2010, 527: 5976-5983. [9]Cui J, Kim I S, Kang C Y, et al. Creep stress effect on the precipitation behavior of Laves phase in Fe-10%Cr-6%W alloys[J]. ISIJ International, 2001, 41: 368-371. [10]Li Q. Precipitation of Fe2W Laves phase and modeling of its direct influence on the strength of a 12Cr-2W steel[J]. Metallurgical and Materials Transactions A, 2006, 37: 89-97. [11]刘鸿国, 李生志, 熊 伟, 等. 马氏体耐热钢中Laves相的析出行为[J]. 材料热处理学报, 2015, 36(9): 109-113. Liu Hongguo, Li Shengzhi, Xiong Wei, et al. Precipitation behavior and influence of Laves phase in martensitic heat resistant steel[J]. Transactions of Materials and Heat Treatment, 2015, 36(9): 109-113. [12]雍岐龙. 钢铁材料中的第二相[M]. 北京: 冶金工业出版社, 2006. [13]Maruyama K, Sawada K, Koike J. Strengthening mechanisms of creep resistant tempered martensitic steel[J]. ISIJ International, 2001, 41: 641-653. [14]Sellars C M, Mctegart W J. On the mechanism of hot deformation[J]. Acta Metallurgica, 1966, 14(9): 1136-1138. [15]Jonas J J, Sellars C M, Tegart W J M. Strength and structure under hot-working conditions[J]. International Materials Reviews, 1969, 14(1): 1-24. [16]Sellars C M, Tegart W J M. Hot workability[J]. International Materials Reviews, 1972, 17(1): 1-24. [17]Zener C, Hollomon J H. Effect of strain rate upon the plastic of steel[J]. Journal of Applied Physics, 1944, 15(1): 22-32. [18]Medina S F, Hernandez C A. General expression of Zener-Hollomon parameter as a function of the chemical composition of low alloy and microalloy steels[J]. Acta Materialia, 1996, 44(1): 137-148. [19]Vyrostkova A, Homolova V, Pecha J, et al. Phase evolution in P92 and E911 weld metals during ageing[J]. Materials Science and Engineering A, 2008, 480: 289-298. |