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首页> 外文期刊>Transactions of the Indian Institute of Metals >Scaling Analysis of Solidification of Liquid Aluminum Alloy Flowing on Cooling Slope
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Scaling Analysis of Solidification of Liquid Aluminum Alloy Flowing on Cooling Slope

机译:冷却坡道上流动的液态铝合金凝固尺度分析

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Among all methods of metal alloy slurry prepa ration, the cooling slope method is the simplest in terms of design and process control. The method involves pouring of the melt from top, down an oblique and channel shaped plate cooled from bottom by counter flowing water. The melt, while flowing down, partially solidifies and forms columnar dendrites on plate wall. These dendrites are broken into equiaxed grains and are washed away with melt. The melt, together with the equiaxed grains, forms semisolid slurry collected at the slope exit and cast into billets having non-dendritic microstructure. The final micro structure depends on several process parameters such as slope angle, slope length, pouring superheat, and cooling rate. The present work involves scaling analysis of con servation equations of momentum, energy and species for the melt flow down a cooling slope. The main purpose of the scaling analysis is to obtain a physical insight into the role and relative importance of each parameter in influ encing the final microstructure. For assessing the scaling analysis, the trends predicted by scaling are compared against corresponding numerical results using an enthalpy based solidification model with incorporation of solid phase movement.
机译:在金属合金浆料制备的所有方法中,冷却斜率方法在设计和过程控制方面是最简单的。该方法包括从顶部倒入由逆流水从底部冷却的斜槽形板向下的熔体。熔体在向下流动时会部分固化并在板壁上形成柱状树枝状结晶。这些树枝状晶体被破碎成等轴晶并被熔体冲走。熔体与等轴晶粒一起形成在斜坡出口收集的半固态浆料,并浇铸成具有非枝晶微观结构的钢坯。最终的微观结构取决于几个工艺参数,例如倾斜角,倾斜长度,浇注过热度和冷却速率。目前的工作涉及对熔体沿冷却斜率流动的动量,能量和物质守恒方程的比例分析。缩放分析的主要目的是获得对每个参数在影响最终微观结构中的作用和相对重要性的物理了解。为了评估结垢分析,使用结合了固相移动的基于焓的凝固模型,将由结垢预测的趋势与相应的数值结果进行比较。

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