[1]Yu J, Sun X, Zhao N, et al. Effect of heat treatment on microstructure and stress rupture life of DD32 single crystal Ni-base superalloy[J]. Materials Science and Engineering A, 2007, 460: 420-427. [2]Yda B, Yy A, Ad C, et al. Effect of solution heat treatment on creep properties of a nickel-based single crystal superalloy[J]. Journal of Materials Research and Technology, 2021, 15: 4702-4713. [3]Shang Z, Wei X, Song D, et al. Microstructure and mechanical properties of a new nickel-based single crystal superalloy[J]. Journal of Materials Research and Technology, 2020, 9(5): 11641-11649. [4]刘 刚, 刘 林, 张胜霞, 等. Re和Ru对镍基单晶高温合金组织偏析的影响[J]. 金属学报, 2012, 48(7): 845-852. Liu Gang, Liu Lin, Zhang Shengxia, et al. Effects of Re and Ru on microstructure and segregation of Ni-based single-crystal superalloys[J]. Acta Metallurgica Sinica, 2012, 48(7): 845-852. [5]Paraschiv A, Matache G, Puscasu C. The effect of heat treatment on the homogenization of CMSX-4 single-crystal Ni-based superalloy[J]. Transportation Research Procedia, 2018, 29: 303-311. [6]Zhang H, Liu Y, Chen X, et al. Microstructural homogenization and high-temperature cyclic oxidation behavior of a Ni-based superalloy with high-Cr content[J]. Journal of Alloys and Compounds, 2017, 727: 410-418. [7]张明娟, 余际星. 热处理工艺对镍基单晶合金性能的影响[J]. 热处理, 2011, 26(4): 31-34. Zhang Mingjuan, Yu Jixing. Effect of heat treatment process on properties of nickel-base mono-crystalline alloy[J]. Heat Treatment, 2011, 26(4): 31-34. [8]田素贵, 李秋阳, 郭忠革, 等. 固溶温度对单晶镍基合金成分偏析和蠕变行为的影响[J]. 中国有色金属学报, 2014, 24(3): 668-677. Tian Sugui, Li Qiuyang, Guo Zhongge, et al. Influence of solution temperature on composition segregation and creep behaviors of single crystal nickel based superalloy[J]. The Chinese Journal of Nonferrous Metals, 2014, 24(3): 668-677. [9]Zhu Z, Basoalto H, Warnken N, et al. A model for the creep deformation behaviour of nickel-based single crystal superalloys[J]. Acta Materialia, 2012, 60(12): 4888-4900. [10]Ma A, Dye D, Reed C R. A model for the creep deformation behaviour of single-crystal superalloy CMSX-4[J]. Acta Materialia, 2008, 56: 1657-1670. [11]Murakumo T, Kobayashi T, Koizumi Y, et al. Creep behaviour of Ni-base single-crystal superalloys with various γ′ volume fraction[J]. Acta Materialia, 2004, 52(12): 3737-3744. [12]Gilles R, Mukherji D, Eckerlebe H, et al. Investigations of early stage precipitation in a tungsten-rich nickel-base superalloy using SAXS and SANS[J]. Journal of Alloys and Compounds, 2014, 612: 90-97. [13]Tan X P, Mangelinck D, Perrin-Pellegrino C, et al. Atom probe tomography of secondary γ′ precipitation in a single crystal Ni-based superalloy after isothermal aging at 1100 ℃[J]. Journal of Alloys and Compounds, 2014, 611: 389-394. [14]Kakehi K. Effect of primary and secondary precipitates on creep strength of Ni-base superalloy single crystals[J]. Materials Science and Engineering A, 2000, 278(1/2): 135-141. [15]卫 平, 李嘉荣, 钟振钢, 等. 热处理制度对DD6单晶合金γ′相尺寸和数量影响[J]. 材料工程, 2000(6): 45-46, 12. Wei Ping, Li Jiarong, Zhong Zhengang, et al. Effects of heat treatment regime on the size and amount of γ′ phase of DD6 single crystal superalloy[J]. Journal of Materials Engineering, 2000(6): 45-46, 12. [16]薛燕鹏, 杨 亮, 喻 健, 等. DD6单晶叶片的γ′相演化[J]. 航空材料学报, 2020, 40(6): 8-15. Xue Yanpeng, Yang Liang, Yu Jian, et al. Evolution of γ′ phase in DD6 single crystal turbine blade[J]. Journal of Aeronautical Materials, 2020, 40(6): 8-15. [17]Su X L, Xu Q Y, Wang R N, et al. Microstructural evolution and compositional homogenization of a low Re-bearing Ni-based single crystal superalloy during through progression of heat treatment[J]. Materials and Design, 2018, 141: 296-322. [18]韩 梅, 岳晓岱, 董建民, 等. DD6单晶高温合金初熔组织演变机制研究[J]. 失效分析与预防, 2019, 14(3): 166-171. Han Mei, Yue Xiaodai, Dong Jianmin, et al. Evolutionary mechanism of incipient melting microstructure of single crystal superalloy DD6[J]. Failure Analysis and Prevention, 2019, 14(3): 166-171. [19]中国金属学会高温材料分会. 中国高温合金手册[M]. 北京: 中国标准出版社, 2012: 549. [20]张琰斌, 刘 林, 黄太文, 等. 一种含硼第三代镍基单晶高温合金的初熔及固溶处理[J]. 稀有金属材料与工程, 2017, 46(10): 3105-3110. Zhang Yanbin, Liu Lin, Huang Taiwen, et al. Incipient melting and solution heat treatment of a boron-bearing third generation single crystal nickel base superalloy[J]. Rare Metal Materials and Engineering, 2017, 46(10): 3105-3110. [21]胡 阳, 李易凌. DD9镍基单晶高温合金固溶处理初熔组织研究[J]. 特种铸造及有色合金, 2021, 41(3): 336-339. Hu Yang, Li Yiling. Incipient melting structures in DD9 nickel-based single crystal superalloy during solid solution[J]. Special Casting and Nonferrous Alloys, 2021, 41(3): 336-339. [22]Lifshitz I M, Slyozov V. The kinetics of precipitation from supersaturated solid solutions[J]. Journal of Physics and Chemistry of Solids, 1961, 19(1): 35-50. [23]Müller L, Glatzel U, Feller-Kniepmeier M. Modelling thermal misfit stresses in nickel-base superalloys containing high volume fraction of γ′ phase[J]. Acta Metallurgica et Materialia, 1992, 40(6): 1321-1327. [24]辛同正. 一种新型镍基单晶高温合金的热处理制度研究[D]. 沈阳: 中国科学院大学, 2016. [25]宁礼奎, 郑 志, 金 涛, 等. 热处理对一种新型镍基单晶高温合金组织与性能的影响[J]. 金属学报, 2014, 50(8): 1011-1018. Ning Likui, Zheng Zhi, Jin Tao, et al. Effect of heat treatments on the microstructure and property of a new nickel base single crystal superalloy[J]. Acta Metallurgica Sinica, 2014, 50(8): 1011-1018. [26]Ali M A, López-Galilea I, Gao S, et al. Effect of γ′ precipitate size on hardness and creep properties of Ni-base single crystal superalloys: Experiment and simulation[J]. Materialia, 2020, 12: 100692. [27]李嘉荣, 刘世忠, 王开国, 等. 第二代单晶高温合金DD6的拉伸性能[J]. 钢铁研究学报, 2003, 15(7): 272-275. Li Jiarong, Liu Shizhong, Wang Kaiguo, et al. Tensile behavior of second generation single crystal superalloy DD6[J]. Journal of Iron and Steel Research, 2003, 15(7): 272-275. [28]Xiong X, Quan D, Dai P, et al. Tensile behavior of nickel-base single-crystal superalloy DD6[J]. Materials Science and Engineering: A, 2015, 636: 608-612. [29]范志东, 李 季, 马翼超, 等. 温度对镍基单晶高温合金DD13拉伸行为的影响[J]. 稀有金属材料与工程, 2019, 48(4): 1288-1292. Fan Zhidong, Li Ji, Ma Yichao, et al. Effect of temperature on tensile behavior of nickel-based single crystal superalloy DD13[J]. Rare Metal Materials and Engineering, 2019, 48(4): 1288-1292. [30]Shang Z, Wei X, Song D, et al. Microstructure and mechanical properties of a new nickel-based single crystal superalloy[J]. Journal of Materials Research and Technology, 2020, 9(5): 11641-11649. [31]Shi Z X, Li J R, Liu S Z, et al. Tensile behavior of the second generation single crystal superalloy DD6[J]. Journal of Iron and Steel Research International, 2015, 22(5): 738-742. [32]Liu J L, Yu J J, Jin T, et al. Influence of temperature on tensile behavior and deformation mechanism of Re-containing single crystal superalloy[J]. Transactions of Nonferrous Metals Society of China, 2011, 21(7): 1518-1523. |