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Study on Rheological Behavior of Semisolid A356 Alloy During Solidification

机译:半固态A356合金凝固过程的流变行为研究。

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In the present work, a model is developed to predict the rheological behavior of an Al-alloy (A356) in semisolid state where the alloy is sheared between two parallel plates during continuous cooling. The flow field is represented by the momentum conservation equation where the non-Newtonian behavior of the semisolid alloy is incorporated considering the Herschel-Bulkley model. In the slurry, the agglomeration and de-agglomeration phenomena of the suspended particles under shear are represented using a time dependent structural parameter. The temperature field during cooling is predicted consid ering the transient energy conservation equation, and hence the fraction of solid and the yield stress of the semisolid alloy are continuously updated. Considering an apparent viscosity of the semisolid alloy as a function of structural parameter, shear stress and shear rate, the governing equations are solved analytically. Finally, the work predicts the variation of the apparent viscosity of the semisolid A356 alloy with fraction of solid. At first, the present prediction is validated against an available experimental data and, thereafter, the work predicts the effect of process parameters such as shear rate and cooling rate on the apparent viscosity.
机译:在本工作中,开发了一种模型来预测处于半固态的铝合金(A356)的流变行为,该合金在连续冷却期间会在两个平行板之间剪切。流场由动量守恒方程表示,其中考虑了Herschel-Bulkley模型,并入了半固态合金的非牛顿行为。在浆料中,使用时间相关的结构参数表示悬浮颗粒在剪切作用下的附聚和解聚现象。考虑到瞬态能量守恒方程,预测了冷却过程中的温度场,因此半固态合金的固含量和屈服应力不断更新。考虑到半固态合金的表观粘度是结构参数,剪切应力和剪切速率的函数,因此可以解析控制方程。最后,这项工作预测了半固态A356合金的表观粘度随固态分数的变化。首先,根据可用的实验数据验证当前预测,然后,工作预测工艺参数(例如剪切速率和冷却速率)对表观粘度的影响。

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