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Development and application of inverse heat transfer model between liquid metal and shot sleeve in high pressure die casting process under non-shooting condition 被引量:7
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作者 Wen-bo Yu Yong-you Cao +1 位作者 Zhi-peng Guo shou-mei xiong 《China Foundry》 SCIE 2016年第4期269-275,共7页
To predict the heat transfer behavior of A380 alloy in a shot sleeve, a numerical approach(inverse method) is used and validated by high pressure die casting(HPDC) experiment under non-shooting condition. The maximum ... To predict the heat transfer behavior of A380 alloy in a shot sleeve, a numerical approach(inverse method) is used and validated by high pressure die casting(HPDC) experiment under non-shooting condition. The maximum difference between the measured and calculated temperature profiles is smaller than 3 °C, which suggests that the inverse method can be used to predict the heat transfer behavior of alloys in a shot sleeve. Furthermore, the results indicate an increase in maximum interfacial heat flux density(q_(max)) and heat transfer coefficient(h_(max)) with an increase in sleeve filling ratio, especially at the pouring zone(S2 zone). In addition, the values of initial temperature(T_(IDS)) and maximum shot sleeve surface temperature(T_(simax)) at the two end zones(S2 and S10) are higher than those at the middle zone(S5). Moreover, in comparison with fluctuations in heat transfer coefficient(h) with time at the two end zones(S2 and S10), 2.4-6.5 kW ·m^(-2)·K^(-1), 3.5-12.5 kW ·m^(-2)·K^(-1), respectively, more fluctuations are found at S5 zone, 2.1-14.7 kW ·m^(-2)·K^(-1). These differences could theoretically explain the formation of the three zones: smooth pouring zone, un-smooth middle zone and smooth zone, with different morphologies in the metal log under the non-shot casting condition. Finally, our calculations also reveal that the values of q_(max) and h_(max) cast at 680 °C are smaller than those cast at 660 °C and at 700 °C. 展开更多
关键词 inverse method A380 casting filling ratio heat transfer behavior
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重力驱动的自然对流下hcp金属枝晶生长的相场-格子玻尔兹曼方法研究
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作者 吴孟武 田冰辉 +2 位作者 张昂 郭志鹏 熊守美 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2023年第6期1629-1643,共15页
开发了一种耦合并行-自适应网格划分算法的相场-格子玻尔兹曼方法来模拟hcp金属的等轴和柱状枝晶生长,重点讨论了重力驱动的自然对流以及自然对流与强制对流耦合对枝晶生长的影响。模拟结果表明,二维情况下的hcp金属枝晶在重力驱动的自... 开发了一种耦合并行-自适应网格划分算法的相场-格子玻尔兹曼方法来模拟hcp金属的等轴和柱状枝晶生长,重点讨论了重力驱动的自然对流以及自然对流与强制对流耦合对枝晶生长的影响。模拟结果表明,二维情况下的hcp金属枝晶在重力驱动的自然对流下呈现非对称生长,同时揭示了溶质偏析和溶质羽流的演化过程。研究得出,溶质羽流的形成是由枝晶的溶质阻塞和熔体流动时溶质传输之间的竞争决定的。引入适当的强制对流可以消除溶质羽流的形成并抑制枝晶尖端溶质浓度的局部波动。研究还发现,重力驱动的自然对流丰富了hcp金属3D枝晶形貌的多样性。 展开更多
关键词 枝晶生长 相场 对流 hcp金属 溶质羽流
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