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Phase-field Modeling of the Influence of Elastic Field on the Nucleation and Microstructure Evolution in Precipitation

Phase-field Modeling of the Influence of Elastic Field on the Nucleation and Microstructure Evolution in Precipitation
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摘要 A phase-field method was employed to study the influence of elastic field on the nucleation and microstructure evolution. Two kinds of nucleation process were considered: one using fixed nucleation probability and the other calculated from the classical nucleation theory. In the latter case, the simulated results show that the anisotropic elastic strain field yields significant effects on the behavior of nucleation. With a large lattice misfit between the matrixes and the precipitates, the nucleation process does not appear fully random but displays some spatial correlation and has a preference for the elastic soft direction. However, with a small lattice misfit, this bias does not look quite clear. On the contrary, in the case of fixed nucleation probability, the elastic field has no influence on the nucleation process. The lattice mismatch also exerts influences on the microstructure morphology: with lattice mismatch becoming larger, the microstructure proves to align along the elastic soft direction. A phase-field method was employed to study the influence of elastic field on the nucleation and microstructure evolution. Two kinds of nucleation process were considered: one using fixed nucleation probability and the other calculated from the classical nucleation theory. In the latter case, the simulated results show that the anisotropic elastic strain field yields significant effects on the behavior of nucleation. With a large lattice misfit between the matrixes and the precipitates, the nucleation process does not appear fully random but displays some spatial correlation and has a preference for the elastic soft direction. However, with a small lattice misfit, this bias does not look quite clear. On the contrary, in the case of fixed nucleation probability, the elastic field has no influence on the nucleation process. The lattice mismatch also exerts influences on the microstructure morphology: with lattice mismatch becoming larger, the microstructure proves to align along the elastic soft direction.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第2期107-110,共4页 中国航空学报(英文版)
基金 National Natural Science Foundation of China (50401013)
关键词 elastic field NUCLEATION phase-field method PRECIPITATION elastic field nucleation phase-field method precipitation
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参考文献10

  • 1Wang Y,Khachaturyan A G.Effect of antiphase domains on shape and spatial arrangement of coherent ordered intermetallics.Scripta Metall 1994; 31:1425-1430.
  • 2Wang Y,Khachaturyan A G.Microstructural evolution during precipitation of ordered intermetallics in multi-particle coherent systems.Phil Mag A 1995; 72:1161-1171.
  • 3Wang Y,Banerjee D,Su C C,et al.Field kinetic model and computer simulation of precipitation of L12 ordered intermetallic from fcc solid solution.Acta Mater 1998; 46:2983-3001.
  • 4Li D Y,Chen L Q.Computer simulation of morphological evolution and rafting of γ' particles in Ni-based superalloys under applied stresses.Scripta Mater 1997; 37:1271-1277.
  • 5Simmons J P,Shen C,Wang Y.Phase field modeling of simultaneous nucleation and growth by explicitly incorporating nucleation events.Scripta Mater 2000; 43:935-942.
  • 6Porter D A,Easterling K E.Phase transformations in metals and alloys.New York:Van Nostrand Reinhold,1981.
  • 7Shen C,Simmons J P,Wu K,et al.Development of computational tools for microstructural engineering of Ni-based superalloys by means of the phase field method.In:Zhao J C,Fahrrnann M,Pollock T M,editors.Materials Design Approaches and Experiences,2001; 57-74.
  • 8Shen C.The fundamentals and applications of phase field method in quantitative microstructural modeling.PhD thesis,USA:The Ohio State University,2004.
  • 9Kim S G,Kim W T,Suzuki T.Interfacial compositions of solid and liquid in a phase-field model with finite interface thickness for isothermal solidification in binary alloys.Phys Rev E 1998; 58:3316-3323.
  • 10Kim S G,Kim W T,Suzuki T.Phase-field model for binary alloys.Phys Rev E 1999; 60:7186-7197.

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