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Numerical Simulation of Heat Transfer during Solidification of Al-Cu Alloy Ingots Cast in a Cylindrical Mold for Different Conditions

机译:不同条件下圆柱模铸铝铜合金锭凝固过程中传热的数值模拟

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摘要

In this paper, two dimensional numerical simulation of heat transfer during solidification of Al- 4.5 wt. % Cu alloy cast in a cylindrical mold was carried out to specify the optimum solidification conditions. The mold has the dimensions of 150 mm height, 38 mm outer radius, and 8 mm thickness. Four cases were studied for the solidification process; first case is the solidification in the mold without applying any thermal effects at four different mold temperatures of 25, 50, 100 and 200 °C respectively. The second case is insulating the cast from the top. The third case is insulating the upper portion of the mold wall. The last case is adding heat to the upper portion of the mold wall for specific time. For the last three cases, the mold temperature is set to 25°C. The results have shown that the increase in mold temperature only increases the solidification time and it does not significantly affect the temperature distribution and the final cast shape. Insulating the top of the mold made the last solidification region to be at the top of the cast, which leads to get ingot free from the secondary cavity. Insulating a portion of the upper wall of the mold made the cast surface to be more homogeneous with smallest secondary cavity. Heat addition to a portion of the upper wall of the mold leads to obtain a cast with approximately flat surface that is free from secondary cavity in addition to the primary cavity.
机译:在本文中,二维凝固过程中Al- 4.5 wt。进行在圆柱形模具中铸造的%Cu合金以指定最佳固化条件。模具的尺寸为高度150毫米,外径38毫米,厚度8毫米。研究了四个案例的凝固过程。第一种情况是模具中的固化,分别在25、50、100和200°C的四种不同模具温度下不施加任何热效应。第二种情况是使铸件与顶部绝缘。第三壳体使模具壁的上部绝缘。最后一种情况是在特定时间内向模具壁的上部加热。对于最后三种情况,模具温度设置为25°C。结果表明,模具温度的升高仅会增加凝固时间,而不会显着影响温度分布和最终的铸件形状。对模具顶部进行绝缘,使最后的凝固区域位于铸件的顶部,从而使铸锭脱离第二型腔。对模具上壁的一部分进行绝缘处理,使铸件表面更加均匀,并具有最小的第二型腔。将热量添加到模具的上壁的一部分导致获得具有大致平坦表面的铸件,该表面除了主腔外没有第二腔。

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