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Modelling of liquid metal flow and oxide film defects in filling of aluminium alloy castings

机译:铝合金铸件填充过程中液态金属流动和氧化膜缺陷的建模

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摘要

The liquid metal flow behaviours in different runner system designs have important effects on the mechanical strength of aluminium alloy castings. In this paper, a new model has been developed which is a two-dimensional program using a finite difference technique and the Marker and Cell (MAC) method to simulate the flow of liquid metal during filling a mould. In the program the Eulerian method has been used for the liquid metal flow, while the Oxide Film Entrainment Tracking Algorithm (OFET) method (a Lagrangian method) has been used to simulate the movement of the oxide film on the liquid metal surface or in the liquid metal flow. Several examples have been simulated and tested and the relevant results were obtained. These results were compared with measured bending strengths. It was found that the completed program was capable of simulating effectively the filling processes of different runner systems. The simulation results are consistent with the experiment. In addition, the program is capable of providing clearer images for predicting the distribution of the oxide film defects generated during filling a mould.
机译:不同流道系统设计中的液态金属流动行为对铝合金铸件的机械强度具有重要影响。在本文中,已经开发了一种新模型,该模型是使用有限差分技术和“标记和单元”(MAC)方法的二维程序,用于模拟模具填充过程中液态金属的流动。在程序中,欧拉方法已用于液态金属流动,而氧化膜夹带跟踪算法(OFET)方法(拉格朗日方法)已用于模拟氧化膜在液态金属表面或金属表面的运动。液态金属流。已对几个示例进行了仿真和测试,并获得了相关结果。将这些结果与测得的弯曲强度进行比较。发现完成的程序能够有效模拟不同流道系统的填充过程。仿真结果与实验吻合。另外,该程序能够提供更清晰的图像,以预测在填充模具期间产生的氧化膜缺陷的分布。

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