会议论文详细信息
14th International Conference on Modelling of Casting, Welding and Advanced Solidification Processes
Impacts of Interface Energies and Transformation Strain from BCC to FCC on Massive-like δ-γ Transformation in Steel
材料科学;机械制造
Yoshiya, M.^1,2 ; Sato, M.^1 ; Watanabe, M.^1 ; Nakajima, K.^1 ; Yokoi, T.^1 ; Ueshima, N.^1 ; Nagira, T.^1 ; Yasuda, H.^1,3
Department of Adaptive Machine Systems, Osaka University, 2-1 Yamadaoka, Suita, Osaka
565-0871, Japan^1
Nanostructures Research Laboratory, Japan Fine Ceramics Center, 2-4-1 Mustuno, Atsuta-ku, Nagoya
456-8587, Japan^2
Department of Materials Science and Engineering, Kyoto University, Yoshida- Honmachi, Kyoto, Sakyo-ku
606-8501, Japan^3
关键词: Atomistic simulations;    Embedded-atom method;    Geometric constraint;    Interface energy;    Liquid/solid interface;    Other interfaces;    Relaxation mechanism;    Transformation strain;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/84/1/012049/pdf
DOI  :  10.1088/1757-899X/84/1/012049
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Interface energies of δ/γ, γ/γ, δ/δ, L/δ, and L/γ interfaces, at first, as a function of misorientation were evaluated with an aid of atomistic simulations with embedded atom method. Then, under geometric constraints where grains or interfaces compete each other to minimize overall free energy, effective interface energies for those interfaces were quantified. It is found that neither the minimum nor effective δ/γ interface energies, 0.41 or 0.56 J/m2, respectively, is significantly higher than those of other interfaces including liquid/solid interfaces, but the δ/γ interface energy is significantly high for the small entropy change upon δ-γ massive-like transformation, resulting in significantly higher undercooling required for γ nucleation in the δ phase matrix than in solidification. Detachment of δ-phase dendrite tips away from γ-phase dendrite trunks can be explained only from a viewpoint of interface energy if small misorientationis introduced at the δ/γ interface from the perfect lattice matching between BCC and FCC crystal structures. Examining the BCC-to-FCC transformation strain on the γ nucleation in the massive-like transformation, the γ nucleation is prohibited 170 K or more undercooling is achieved unless any relaxation mechanism for the transformation strain is taken into account.

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