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Thermo-Calc based multi-component micro-segregation model and solidification paths calculations
Authors:Zhao Guangwei  Li XinZhong  Xu Daming  Guo JingJie  Fu Hengzhi  Du Yong  He Yuehui
Affiliation:1. School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China
2. State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, Hunan, China
Abstract:On the basis of a multi-length scale modeling, a mixture-averaged multi-component /multiphase micro-segregation model was proposed without pre-set function for the micro-scale solute profile. The model explains the effect of morphologies of solidifying phases and solid back diffusion (SBD) on segregation, and covers the two limiting solidification cases of Scheil and Lever-rule models. A commercial Thermo-Calc software package/database was linked to the algorithms via its TQ6-interface for instantaneous determination of the related thermodynamic data of the multi-component alloys. The influences of cooling rate and other parameters on the solidification path and micro-segregation behavior were numerically investigated by sample calculation of the ternary Al-Cu-Mg alloys. A parallel experimental investigation on Al-Cu-Si alloys solidified under different cooling conditions was conducted to validate the theoretical model. Reasonable agreements were gained between the predicted solidification paths and the measured results.
Keywords:solidification path  micro-segregation  multi-component/multi-phase alloys  thermo-Calc
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