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个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 材料成型及控制工程专业负责人
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:材料科学与工程学院
学科:材料加工工程
办公地点:铸造中心403
联系方式:0411-84706169
电子邮箱:caozq@dlut.edu.cn
等轴球晶凝固多相体系内热溶质对流、补缩流及晶粒运动的数值模拟Ⅱ.模型的应用
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发表时间:2022-10-06
发表刊物:金属学报
所属单位:材料科学与工程学院
卷号:42
期号:6
页面范围:591-598
ISSN号:0412-1961
摘要:The developed three-phase model of globular equiaxed grain solidification has been applied to the cooling channel process of semi-solid slurry of A356 aluminum alloy. The effects of the processing parameters on the grain density, size and solid fraction have been studied. The results show that, grain density has its maximum at the pouring position of the cooling channel, the grain size and solid fraction have their maximum at the end of the cooling channel. Their distributions are almost uniform in the mold after rheocasting process. Decreasing proper pouring temperature is helpful to increase the grain density and solid fraction, and to decrease the grain size. In addition, the flow pattern of Al-4%Cu (mass fraction) solidification has been numerically investigated, showing that the thermal convection and feeding flow dominate the flow pattern at the beginning of solidification and the thermo-solutal convection dominates the middle and the feeding flow controls the end. Additionally, the effects of grain movement and feeding flow on the formation of free surface and macrosegregation have been studied. The results show that the obstacle of grain movement directly affects the shape of free surface, and completely different macrosegregation maps are obtained with considering feeding flow and without. The developed model has been validated by comparing the grain size between the measurement and simulation.
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