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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical simulation of cold-lap defects during casting filling process
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Numerical simulation of cold-lap defects during casting filling process

机译:铸造灌装过程中冷轧缺损的数值模拟

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Cold lap is one of the common defects in casting productions, which could result in poor surface accuracy and mechanical properties of castings. The cold-lap formation process is difficult to observe directly using only experimental measures, since the casting filling process is in a state of high-temperature flow inside a mold. The keys to predicting defects accurately are searching the interface front of flow, judging the collision of fronts, and defining the formation model of cold laps. A formation model of cold lap, which is related to the solid fraction, velocity, and volume fraction of the metal phase, is developed in this paper, and a method for judging the interface front and its collision was adopted. On the basis of the open-source computational fluid dynamics software OpenFOAM, a solver for predicting cold lap defects during the casting filling process was developed. The filling process of an aluminum alloy benchmark test was simulated, and the simulation results were consistent with the experimental results, which indicates the accuracy of the adopted model. Two low-pressure die-casting copper alloy filling processes with different ingates were calculated, and the formation processes of cold lap were compared with each other. The simulation results showed that there was significantly lesser cold lap in the scheme with an ingate under the lower surface of casting, which was basically consistent with the experimental results; therefore, the practicability of the adopted model was confirmed.
机译:冷圈是铸造生产中的常见缺陷之一,这可能导致铸件的表面精度差和机械性能。冷圈形成过程难以仅使用实验措施直接观察,因为铸造填充过程处于模具内的高温流状态。预测缺陷的键准确地搜索流量的界面,判断前部的碰撞,并定义冷圈的形成模型。本文开发了与金属相的固相,速度和体积分数有关的冷圈形成模型,采用了一种判断界面前部及其碰撞的方法。在开源计算流体动力学软件OpenFoam的基础上,开发了一种用于预测铸造灌装过程中的冷圈缺陷的求解器。模拟了铝合金基准测试试验的填充过程,仿真结果与实验结果一致,这表明所采用的模型的准确性。计算具有不同环盐的两个低压压铸铜合金填充过程,彼此比较冷圈的形成过程。仿真结果表明,该方案中具有显着较小的冷圈,在铸造下表面下的同种,其基本上与实验结果一致;因此,确认了采用模型的实用性。

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