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·620. 工程科学学报,第37卷,第5期 and anisotropy of phase in CMSX-4 during creep at 750C and dendritic structure on the creep behavior of a Re-containing super- 750 MPa.Mater Sci Eng.A,2003,356(12)352 alloy at high temperature/low stress.Mater Sci Eng A,2012, Suzuki A,Gigliotti FX,Hazel B T,et al.Crack Progression dur- 546:139 ing sustained-peak low-cycle fatigue in single-crystal Ni-base su- Han G M,Yang Y H,Yu J J,et al.Temperature dependence of peralloy Rene N5.Metall Mater Trans A,2010,41(4):947 anisotropic stress-rupture properties of nickel-based single crystal B] Sass V,Glatzel U,Feller-Kniepmeier M.Creep anisotropy in the superally SRR99.Trans Nonferrous Met Soc China,21(8):1717 monocrystalline nickel-base superalloy CMSX-4 //Superalloy [10]Zhang Z K,Wang B Z,Liu D S,et al.Creep behavior and TMS,Warrendale,1996:283 creep rupture mechanism in DD6 single crystal superalloy.J Ma- 4]Zhou H,Ro Y,Harada H et al.Thermo mechanical fatigue be- ter Sci Eng,2012,30(3):375 havior of the third-generation,single crystal superalloy TMS-75: (张中奎,王佰智,刘大顺,等.DD6单品合金蠕变特性及 deformation structure.Metall Mater Trans A,2004,35(6):1779 断裂机理.材料科学与工程学报,2012,30(3):375) [5]Tsuno N,Kakehi K,Rae C M F et al.Effect of ruthenium on [11]Liu J L,Jin T,Zhang J H,et al.Anisotropy of high temperature creep strength of Ni-base single-crystal superalloys at 750 C and stress rupture property of a nickel-base single crystal superalloy. 750 MPa.Metall Mater Trans A,2009,40 (2)269 Acta Metall Sin,2001,37 (12)1233 [6]Gunturi SS K,Maclachlan D W,Knowles D M.Anisotropic 12]Heltsbger R W.The Plastic Deformation and Rupture Mechanics creep in CMSX-4 in orientations distant from (001).Mater Sci of Engineering Materials.Beijing,China Machine Press,1982 EngA,2000,289:289 (赫次伯格RW.工程材料的变形与断裂力学.北京:机械 [7]Miura N.Kondo Y,Ohi N.The influence of dislocation substruc- 工业出版社,1982) ture on creep rate during accelerating creep stage of single crystal [13]Gunturi S S K,khan T,Caron P,et al.Formulation and identi- nickel-based superalloy CMSX-4 //Superalloys.TMS,Warrenda- fication of damage kinetic constitutive equations /Continuum le,2000:377 Damage Mechanics Theory and Applications.New York,1987: [8]Milhet X,Arnoux M,Cormier J,et al.On the influence of the 37工程科学学报,第 37 卷,第 5 期 and anisotropy of phase in CMSX--4 during creep at 750℃ and 750 MPa. Mater Sci Eng. A,2003,356( 1-2) : 352 [2] Suzuki A,Gigliotti F X,Hazel B T,et al. Crack Progression dur￾ing sustained-peak low-cycle fatigue in single-crystal Ni-base su￾peralloy René N5. Metall Mater Trans A,2010,41( 4) : 947 [3] Sass V,Glatzel U,Feller-Kniepmeier M. Creep anisotropy in the monocrystalline nickel-base superalloy CMSX-- 4 / /Superalloy. TMS,Warrendale,1996: 283 [4] Zhou H,Ro Y,Harada H et al. Thermo mechanical fatigue be￾havior of the third-generation,single crystal superalloy TMS--75: deformation structure. Metall Mater Trans A,2004,35( 6) : 1779 [5] Tsuno N,Kakehi K,Rae C M F et al. Effect of ruthenium on creep strength of Ni-base single-crystal superalloys at 750 ℃ and 750 MPa. Metall Mater Trans A,2009,40( 2) : 269 [6] Gunturi S S K,Maclachlan D W,Knowles D M. Anisotropic creep in CMSX--4 in orientations distant from〈001〉. Mater Sci Eng A,2000,289: 289 [7] Miura N,Kondo Y,Ohi N. The influence of dislocation substruc￾ture on creep rate during accelerating creep stage of single crystal nickel-based superalloy CMSX--4 / /Superalloys. TMS,Warrenda￾le,2000: 377 [8] Milhet X,Arnoux M,Cormier J,et al. On the influence of the dendritic structure on the creep behavior of a Re-containing super￾alloy at high temperature /low stress. Mater Sci Eng A,2012, 546: 139 [9] Han G M,Yang Y H,Yü J J,et al. Temperature dependence of anisotropic stress-rupture properties of nickel-based single crystal superally SRR99. Trans Nonferrous Met Soc China,21( 8) : 1717 [10] Zhang Z K,Wang B Z,Liu D S,et al. Creep behavior and creep rupture mechanism in DD6 single crystal superalloy. J Ma￾ter Sci Eng,2012,30( 3) : 375 ( 张中奎,王佰智,刘大顺,等. DD6 单晶合金蠕变特性及 断裂机理. 材料科学与工程学报,2012,30( 3) : 375) [11] Liu J L,Jin T,Zhang J H,et al. Anisotropy of high temperature stress rupture property of a nickel-base single crystal superalloy. Acta Metall Sin,2001,37( 12) : 1233 [12] Heltsbger R W. The Plastic Deformation and Rupture Mechanics of Engineering Materials. Beijing,China Machine Press,1982 ( 赫次伯格 R W. 工程材料的变形与断裂力学. 北京: 机械 工业出版社,1982) [13] Gunturi S S K,khan T,Caron P,et al. Formulation and identi￾fication of damage kinetic constitutive equations / / Continuum Damage Mechanics Theory and Applications. New York,1987: 37 · 026 ·
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