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Simulation and Experiment on Direct Continuous Casting Process of Lead Frame Copper Alloy

机译:引线框架铜合金直连铸造工艺的仿真与试验

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Direct Continuous Casting (D.C.C) is an important method in casting lead frame copper alloy. In this paper, numerical simulation is adopted to investigate the casting process in order to optimize the D.C.0 technical parameters, such as the casting temperature, casting speed and cooling intensity. According to the numerical results, the reasonable parameters are that the casting temperature is between 1413K-1413K, the casting speed is between 8m/h-10m/h and the speed of cooling water is between 4.2m/s-4.6m/s. And the depth of liquid-solid boundary is measured in different casting temperature and casting speed by experiments. The results show the actual measurements have a little deviation with the numerical simulation. The results of numerical simulation provide the significant reference to the actual experiments.
机译:直连铸(D.C.C)是铸造引线型铜合金的重要方法。在本文中,采用数值模拟来研究铸造过程,以优化D.C.0技术参数,例如铸造温度,铸造速度和冷却强度。根据数值结果,合理的参数是铸造温度在1413K-1413K之间,铸造速度在8m / h-10m / h之间,冷却水的速度在4.2m / s-4.6m / s之间。并且通过实验以不同的浇铸温度和浇铸速度测量液体固界的深度。结果显示实际测量与数值模拟有一点偏差。数值模拟的结果提供了对实际实验的重要参考。

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