首页> 外文会议>Modeling of Casting, Welding and Advanced Solidification Processes XI vol.1 >FULLY COUPLED MULTI-PHASE MOLD-FILLING AND SOLIDIFICATION SIMULATION OF INDUSTRIAL CASTING PROCESSES
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FULLY COUPLED MULTI-PHASE MOLD-FILLING AND SOLIDIFICATION SIMULATION OF INDUSTRIAL CASTING PROCESSES

机译:工业铸造过程的全耦合多相注模与凝固模拟

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A fully coupled three-phase mold-filling simulation of gas and melt flow and the solidification process was developed to simulate complex phenomena in casting processes like the influence of the gas on the filling process and solidification of melt during filling. The simulation uses a fixed grid volume-of-fluid approach to separate the gas, melt and solidified phase. Gas and liquid phase are handled as compressible and an enthalpy method was used to model the latent heat release.rnThe three-phase simulation was applied to an industrial die-casting process for a passenger car piston. Six cycles of the die casting process where simulated to gain a realistic temperature distribution on the mold before the filling. The three-phase simulation showed a turbulent flow at the beginning of the filling with overturning and splashing. Air bubbles travel from the inlet through the casting to the outlet. Solidification already starts during filling but the filling is not blocked by already solidified metal.
机译:进行了气体,熔体流动和凝固过程的完全耦合的三相注模模拟,以模拟铸造过程中的复杂现象,例如气体对填充过程的影响以及填充过程中熔体的凝固。该模拟使用固定的网格流体体积方法来分离气相,熔体和凝固相。气相和液相被视为可压缩的,并且采用焓法对潜热释放进行建模。三相模拟被应用于乘用车活塞的工业压铸过程。模拟压铸过程的六个循环,以在填充之前在模具上获得真实的温度分布。三相仿真显示,在填充开始时出现湍流,并发生倾覆和飞溅。气泡从进口穿过铸件到达出口。填充过程中已经开始固化,但是填充不会被已经固化的金属阻塞。

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