Simulation for the Precipitation Process of Ordered Intermetallic Compounds in Binary and Ternary Ni-Al Based Alloys by Phase-Field Model

With the microscopic Phase-Field Model (PFM), the atomic-scale computer simulation programs for the precipitation mechanism of the ordered intermetallic compound γ′in binary Ni-15.5at. %Al alloy, θ and γ′ in ternary Ni75AlxV25-x alloys were worked out based on the microscopic diffusion equation and nonequilibrium free energy. It can be applied to the whole precipitation process and composition range. A prior assumptions on the new phase structure or transformation path was unnecessary, the possible nonequilibrium phases, atomic clustering and ordering could be described automatically, and atomic images, order parameters and volume fractions of precipitates were obtained. Computer simulation was performed systematically on the precipitation mechanism, precipitation sequence of θ and γ′in complicated system with ordering and clustering simultaneously. Through the simulated atomic images and composition order parameters of precipitates, we can explain the complex precipitation mechanisms of θ(Ni3V) and γ′(Ni3Al) ordered phases. For the binary alloy, the precipitation mechanism of γ′phase has the characteristic of both non-classical nucleation + growth (NCNG) and congruent ordering + spinodal decomposition (COSD). For the ternary alloys, the precipitation characteristic of γ′phase transforms from NCNG to COSD gradually, otherwise, the precipitation characteristic of θ phase transforms from COSD to NCNG mechanism gradually.
Computer Simulation Phase Field Model (PFM) ordered intemetallic compounds Ni-Al based alloys
Hua Hou Yuhong Zhao Yuhui Zhao
College of Materials Science and Engineeering, North University of China, Taiyuan 030051 P.R.China School of Materials Science and Engineering, Beijing University of Aeronautics and Astronautics, Bei Department of Mechanical and Electronic Engineering, Hebei College of Industry and Technology, Shiji
国际会议
郑州
英文
2007-10-23(万方平台首次上网日期,不代表论文的发表时间)