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A numerical model study of the effect of interface shape on particle pushing

机译:界面形状对粒子推进影响的数值模型研究

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A numerical model using an axisymmetric approximation is developed to study particle pushing during solidification. The model is applied to determine the effect of different parameters on the predicted critical velocity for engulfment of the particle by the solidifying interface. The main parameters considered are particle radius, interface velocity and interface shape as obtained for different thermal conductivities between matrix and particle. The relative thermal conductivity is very important in the pushing/capture process in increasing or decreasing the critical velocity for pushing one order of magnitude, with respect to the critical velocity for a flat interface, depending on whether the interface is concave or convex. Moreover, the predicted critical velocities cover the span of measured values in agreement with the tendency given by the thermal conductivities and particle radius.
机译:建立了使用轴对称近似的数值模型,以研究凝固过程中的颗粒推动。该模型用于确定不同参数对凝固界面吞噬颗粒的预测临界速度的影响。考虑的主要参数是颗粒半径,界面速度和界面形状,这是针对基质和颗粒之间不同的热导率而获得的。相对热导率在推动/捕获过程中相对于平坦界面的临界速度而言,相对于平坦界面的临界速度而言,增加或减小推动一个数量级的临界速度非常重要。此外,预测的临界速度覆盖了测量值的范围,与导热率和颗粒半径给出的趋势一致。

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