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基于KKS相場模型模擬強迫對流下鎂合金枝晶的生長
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國家自然科學(xué)基金 (51164027,50276023)


Numerical Simulation of Dendritic Growth of Magnesium Alloys under Forced Flow Using KKS Phase-Field Model
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    摘要:

    基于KKS模型,耦合溫度場、濃度場、流場和取向場,建立適合hcp晶系鎂合金的相場模型,研究強迫對流下鎂合金單晶粒和多晶粒生長過程。結(jié)果表明:在v=0.02 m/s的水平強迫對流作用下,晶粒上游側(cè)3個方向的一次枝晶臂生長速度明顯快于下游側(cè)3個方向的一次枝晶臂,同一時刻上游方向一次枝晶臂最長,上游側(cè)與水平方向成60o夾角的兩枝晶臂次之,下游側(cè)與水平方向成60o夾角的兩枝晶臂較短,下游方向枝晶臂最短。多晶粒生長時,晶粒間相互影響,不同晶粒的枝晶臂相互碰撞并彼此抑制,最終形成不對稱枝晶形貌。將模擬結(jié)果與實驗結(jié)果進行對比表明,鎂合金連續(xù)形核下多晶粒枝晶形態(tài)的模擬結(jié)果與實驗結(jié)果十分相似,從而驗證了本文中相場模型的正確性

    Abstract:

    Based on the KKS model which couples the temperature field, concentration field, flow field and orientation field, the phase-field model for the magnesium alloys with hcp structure was established to simulate both of the single and the multi-grain dendritic growths of magnesium alloys during solidification under forced flow. The results show that the growths of three directions on the upstream side are much faster than those on the downstream side when the forced flow velocity is 0.02 m/s. At the same time, the primary dendrite on the upstream side is the longest, the two dendrites with level direction of 60o angle on the upstream side are second, the two dendrites with level direction of 60o angle on the downstream side are more shorter, and the primary dendrite on the downstream side is the shortest. Under the case of the multi-grain, the grains grown face to face influence mutually and grow competitively. The dendrite arms of different dendrite collide each other and are mutually inhibited, ultimately an unsymmetric dendrite morphology is formed. Based on the continuous nucleation model of the multi-grain dendritic growths of magnesium alloys, the simulation results show that there is a high consistency of the dendritic morphologies between simulation and experiment, verifying the validity of the KKS phase-field model

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堯軍平,李翔光,龍文元,張 磊.基于KKS相場模型模擬強迫對流下鎂合金枝晶的生長[J].稀有金屬材料與工程,2014,43(1):97~102.[Yao Junping, Li Xiangguang, Long Wenyuan, Zhang Le. Numerical Simulation of Dendritic Growth of Magnesium Alloys under Forced Flow Using KKS Phase-Field Model[J]. Rare Metal Materials and Engineering,2014,43(1):97~102.]
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  • 收稿日期:2013-01-20
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  • 在線發(fā)布日期: 2014-04-16
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