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Prediction of Interfacial Heat Transfer Coefficients by Using a Modified Lump Capacitance Method for Aluminum Casting in a Green Sand Mold

机译:改进的块电容法预测生砂模具中铝铸件的界面传热系数

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This paper analyzes the heat flux and heat transfer coefficient at the mold/metal interface in the green sand mold casting of a cylindrical aluminum component. In the present casting experiment, thermocouples are used to measure the temperature at various points in the molten metal and the sand mold. Using the acquired temperature data, the heat flux and heat transfer coefficient at the sand-mold/metal interface are computed using a modified lump capacitance method, in which the latent heat term is calculated by considering the time-dependent variation of the solid/liquid interface location. For comparison purposes, the heat flux and heat transfer coefficient are also computed using Beck's inverse scheme. The results obtained from the two computational methods are found to be similar. The casting process is simulated by entering the values of the interfacial heat transfer coefficients computed by the two schemes into a commercial finite element analysis program (FIDAP). The cooling curve computed using the interfacial heat transfer coefficient determined by the modified lump capacitance method is found to be in good agreement with the experimental results. The predicted solidification time differs from that observed experimentally by just 2.8%. Furthermore, it is found that the Biot number is very small for the present aluminum casting. Therefore, the present results verify the feasibility of using the modified lump capacitance method to compute the interfacial heat flux and heat transfer coefficient in the green sand mold casting of small-sized components.
机译:本文分析了圆柱形铝构件的生砂铸模中模具/金属界面处的热通量和传热系数。在当前的铸造实验中,热电偶用于测量熔融金属和砂型中各个点的温度。使用获取的温度数据,使用改进的块电容法计算砂模/金属界面处的热通量和传热系数,其中潜热项通过考虑固/液随时间的变化来计算接口位置。为了进行比较,还使用贝克的逆方案来计算热通量和传热系数。发现从两种计算方法获得的结果是相似的。通过将两种方案计算的界面传热系数的值输入到商业有限元分析程序(FIDAP)中,可以模拟铸造过程。发现使用改进的块电容法确定的界面传热系数计算出的冷却曲线与实验结果非常吻合。预测的固化时间与实验观察到的仅相差2.8%。此外,发现对于当前的铝铸件,毕奥数非常小。因此,本研究结果证明了使用改进的块状电容方法计算小型零件的生砂铸型中的界面热通量和传热系数的可行性。

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