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PHASE FIELD SIMULATION ON DENDRITIC GROWTH IN PRESSURIZED SOLIDIFICATION OF Mg-Al ALLOY

机译:Mg-Al合金加压凝固过程中枝晶生长的相场模拟

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A phase field model coupled with thermodynamic calculation for describing the dendritic growth in pressurized solidification of Mg-Al alloy during squeeze casting has been developed, in which the effects of pressure on the Gibbs free energy and chemical potential of solid and liquid phases, the solute diffusion coefficient, and the solute partition coefficient were considered. With the comparison of the dendritic growth under atmospheric and elevated pressures, the manifestations of the effect of pressure on the microstructure evolution were discussed. The results indicated that the dendritic growth rate tends to increase and the secondary dendrite arms are more developed as the pressure is increased from 0.1 to 100MPa, which showed a good agreement with the experimental results of direct squeeze casting of Mg-Al alloy.
机译:建立了描述热压铸造过程中Mg-Al合金加压凝固过程中枝晶生长的相场模型和热力学计算,其中压力对固相和液相,固溶体的吉布斯自由能和化学势的影响考虑了扩散系数和溶质分配系数。通过比较大气压和高压下的树枝状生长,讨论了压力对显微组织演变的影响的表现形式。结果表明,随着压力从0.1MPa增加到100MPa,枝晶生长速率趋于增加,二次枝晶臂更发达,这与Mg-Al合金的直接挤压铸造实验结果吻合良好。

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