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Dendrite Growth Model Using Front Tracking Technique with New Growth Algorithm

机译:使用前跟踪技术和新生长算法的枝晶生长模型

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A numerical model using a modified front tracking technique has been developed to simulate dendrite growth during the solidification of binary alloys. Diffusion in liquid and solid, mass conservation at the solid/liquid interface and local equilibrium at the solid/liquid interface with consideration of curvature undercooling were solved to determine the position of the solid/liquid interface. Preferential crystallographic orientation of a dendrite was taken into account by introduction of a modified growth technique. The growth process of a dendrite having an arbitrary preferential crystallographic orientation has been simulated in 2D using the developed model. Simulations were carried out for the growth of many dendrites in an aluminum-silicon binary alloy with continuous cooling and isothermal solidification conditions. The amount of eutectic formed in aluminum-silicon alloys with different Si content was estimated from the simulation. The estimated amounts of eutectic fell between the values predicted from the Scheil equation and the equilibrium lever rule. This result demonstrates the capability of the model for predicting grain macrostructure of alloy castings by taking into account information such as dendrite morphology, amount and distribution of the eutectic phase and microsegregation.
机译:已经开发出使用改进的前跟踪技术的数值模型,以模拟二元合金凝固过程中枝晶的生长。解决了考虑到曲率过冷的液体和固体的扩散,固/液界面处的质量守恒和固/液界面处的局部平衡,从而确定了固液界面的位置。通过引入改进的生长技术考虑了枝晶的优选晶体学取向。使用开发的模型已在2D中模拟了具有任意优先晶体学取向的树枝状晶体的生长过程。在连续冷却和等温凝固条件下,对铝-硅二元合金中许多树枝状晶体的生长进行了模拟。通过模拟估算了不同硅含量的铝硅合金中形成的共晶数量。共晶的估计量介于根据Scheil方程和平衡杠杆法则预测的值之间。该结果通过考虑诸如枝晶形态,共晶相的数量和分布以及微偏析等信息,证明了该模型预测合金铸件晶粒宏观结构的能力。

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