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Atomization in High-Pressure Die Casting - Step 2 Simulation of Atomized Flow of Molten Aluminum by LES-VOF Method

机译:高压压铸雾化雾化 - LES-VOF法测定熔融铝雾化流动的模拟

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The atomization of molten aluminum when injected during high-pressure die casting is analyzed to determine its effect in enhancing the strength of the product being cast. In the previously reported first step of this study, molten aluminum was injected into open space and its atomization was observed photographically. Now in the second step of the study, a simulation is conducted to determine how the molten aluminum becomes atomized at the injection nozzle (gate) and how this atomized material flows and fills the cavity. A new simulation method is developed based on large-eddy simulation coupled with the volume-of-fluid method. The simulation system is verified by comparing its output with photographs taken in the first step of the study. Simulations are then conducted using an approximation of a real cavity to visualize how it is filled by the atomized molten aluminum. The results show that the atomized material is conveyed through the cavity as a multiphase flow containing fine air bubbles, and that this multiphase flow persists until filling is complete.
机译:分析了在高压压铸期间注入时熔融铝的雾化,以确定其在增强铸造产品的强度方面的作用。在先前报道的本研究的第一步中,将熔融铝注入开放空间中,并且摄影地观察其雾化。现在在研究的第二步中,进行了模拟以确定熔融铝在注射喷嘴(栅极)处的雾化以及该雾化材料如何流动并填充腔。一种新的仿真方法是基于与流体体积法的大涡流模拟开发的。通过将其输出与研究的第一步中的第一步进行比较,通过比较其输出来验证仿真系统。然后使用真实腔的近似进行模拟以使其填充雾化熔融铝填充的仿真。结果表明,雾化材料通过腔作为含有细空气气泡的多相流动的腔传送,并且这种多相流仍然存在,直到填充完成。

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