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Analysis of Interfacial Heat Transfer Coefficient of Green Sand Mold Casting for Aluminum and Tin-Lead Alloys by Using a Lump Capacitance Method

机译:集总电容法分析铝和锡铅合金生砂铸型的界面传热系数

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摘要

During the casting process of green sand mold, air gaps will form between the metal and sand mold. The air gaps will make it difficult to analyze the heat transfer at the mold/metal interface. Generally, an interfacial heat transfer coefficient is employed to evaluate the heat flux transferred across the air gaps. Though the interfacial heat transfer coefficient is highly important, its value is not easily obtained by using the direct experimental or theoretical method. With temperature-measured data, some inverse methods can be used to predict the coefficient. However, the latent heat released and undercooling during the solidification of the molten metal and the moisture of the green sand mold complicate the associated temperature calculations. To overcome this difficulty, a lump capacitance method is proposed in this study to calculate the interfacial heat transfer coefficient for the casting process in green sand mold. Thermalcouples are utilized to measure the temperatures of sand mold and metal. The geometry of casting is cylindrical and the castings are A356 alloy and Sn-20 wt. % Pb alloy. With the predicted interfacial coefficients, the temperature field of the metal was solved numerically. Based on the solidification time, the numerical results are in good agreement with the experimental ones. This verified the feasibility of the proposed method and it can be applied in the future study or design of a casting process.
机译:在生砂模的铸造过程中,金属与砂模之间会形成气隙。气隙将使得难以分析模具/金属界面处的热传递。通常,采用界面传热系数来评估通过气隙传递的热通量。尽管界面传热系数非常重要,但是使用直接的实验或理论方法并不容易获得其值。对于测得的数据,可以使用一些反演方法来预测系数。然而,在熔融金属凝固期间释放的潜热和过冷以及生砂模具的水分使相关的温度计算复杂化。为了克服这个困难,本研究提出了一种总电容法来计算生砂模具铸造过程中的界面传热系数。热电偶用于测量砂型和金属的温度。铸件的几何形状是圆柱形,铸件是A356合金和Sn-20 wt。 %Pb合金。利用预测的界面系数,可以对金属的温度场进行数值求解。根据凝固时间,数值结果与实验结果吻合良好。这证明了所提出方法的可行性,并且可以在将来的研究或铸造工艺设计中应用。

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