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SIMULATION OF POROSITY FORMATION IN ALUMINUM CASTING

机译:铝铸造孔隙率的模拟

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A new approach based on microsegregation of gas dissolved in the melt is used to model pore formation during the solidification of aluminum alloys. The model predicts the amount and size of the porosity in a solidified casting. Computation of the micro-/macro-scale gas species transport in the melt is coupled with the simulation of the feeding flow and calculation of the pressure field. The rate of pore growth is calculated based on the local level of gas supersaturation in the melt. The effect of the microstructure on pore formation is also taken into account. Parametric studies for one-dimensional solidification under an imposed temperature gradient and cooling rate illustrate that the model captures important phenomena observed in porosity formation in aluminum alloys. Comparisons between predicted porosity percentages and previous experimental measurements show good correspondence.
机译:一种基于溶解在熔体中的气体微量测定的新方法用于在铝合金凝固过程中模拟孔形成。该模型预测凝固铸件中孔隙率的量和尺寸。熔融中的微/宏观气体物种传输的计算与压力场的馈电和计算的模拟相结合。基于熔体中的局部气体过饱和的局部水平来计算孔生长速率。还考虑了微观结构对孔形成的影响。在施加的温度梯度和冷却速率下的一维凝固的参数研究说明了模型在铝合金中以孔隙形成观察到的重要现象。预测孔隙度百分比与先前实验测量的比较显示了良好的对应。

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