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Modelling of shrinkage formation in casting by the phase field method

机译:基于相场法的铸件收缩形成建模

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摘要

Most commercial softwares simulating casting process use a scalar field to quantify the shrinkage on final parts. The repartition of this scalar is used to localize shrinkage in the part. In this work, the objective is to use a new approach to predict morphological information about size and shape of shrinkage: the phase field method. This method is based on a parameter order defining the alternating zones metal/gas. Starting with a uniform unit value of this scalar, the phase field equation is modified with a nucleation process predicting the growth of the air phase into the metal one still liquid. The coupling with the Navier-Stokes equation brings up some interesting non-dimensional parameters that affect shrinkage morphology. This is what we have tried to analyse after proposing the modified phase fields formalism. Even if we are not yet in the predictive stage, we present in the end of this paper a numerical/experimental comparison showing the potentiality of the developed approach.
机译:大多数模拟铸造过程的商业软件都使用标量场来量化最终零件的收缩率。该标量的重新分区用于定位零件中的收缩。在这项工作中,目标是使用一种新的方法来预测有关收缩大小和形状的形态信息:相场法。该方法基于定义金属/气体交替区的参数顺序。从该标量的均匀单位值开始,通过成核过程修改相场方程,预测空气相向金属静止液相的增长。与Navier-Stokes方程的耦合带来了一些影响收缩形态的有趣的无量纲参数。这就是我们在提出修正相场形式主义后试图分析的内容。即使我们还没有处于预测阶段,我们也会在本文的最后提出一个数值/实验比较,以显示所开发方法的潜力。

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