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Modelling of air pressure effects in casting moulds

机译:铸造模具中的气压影响建模

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In the casting process, as a mould is filled with molten metal, air escapes through the vents. Air pressure in the mould cavity has serious effects upon the filling behaviour such as surface profile of the molten metal and filling time. In this project a computational model was developed for calculation of air pressure during the mould filling. A 3D single phase code based on the SOLA-VOF algorithm was used for the prediction of the fluid flow. The ideal gas assumption, conservation of mass equation and Bernoulli law were used for the calculation of air pressure. A new algorithm was developed to interpolate air pressure on the surface cells. The creation of air pressure was correlated with the sizes of the vents and their locations. An experimental test was designed to verify the modelling results. Comparison between the experimental data and simulation results has shown a good agreement.
机译:在铸造过程中,当模具中充满熔融金属时,空气会通过通风孔逸出。模腔中的气压严重影响填充行为,例如熔融金属的表面轮廓和填充时间。在该项目中,开发了一种计算模型,用于计算模具填充过程中的气压。基于SOLA-VOF算法的3D单相代码用于流体流量的预测。理想气体假设,质量方程守恒和伯努利定律用于计算气压。开发了一种新算法来在表面单元上插入气压。气压的产生与通风口的大小及其位置相关。设计了一个实验测试来验证建模结果。实验数据与仿真结果的比较显示出很好的一致性。

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