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首页> 外文期刊>Journal of Composite Materials >Numerical simulation of mold filling and particulate flow of A356/SiCp indirect squeeze casting
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Numerical simulation of mold filling and particulate flow of A356/SiCp indirect squeeze casting

机译:A356 / SICP间接挤压模具灌装和颗粒流量的数值模拟

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摘要

In this investigation, a mathematical model based on the dispersed phase model and multiphase flow principle was introduced, and applied to simulate the mold filling and particulate flow of particulate reinforced metal matrix composites casting. Experiments of spiral-square shaped indirect squeeze castings of A356/50 mu m SiCp were conducted to validate the established model. The SiCp fractions in the casting different locations were quantitatively measured with micro digital image analysis system and were compared with the simulation results. It was found that particulate fractions and distribution patterns at different locations were quite different along the filling distance. The experimental and simulated results about the SiCp distribution in the castings show acceptable agreement. Further, the effect of fluid flow and particulate trajectories on the particulate distribution was analyzed and discussed. The research has shown the validity of application of the model for practical particulate reinforced Al-based composites casting.
机译:在该研究中,引入了基于分散相模型和多相流动原理的数学模型,并应用于模拟颗粒增强金属基质复合材料铸造的模具填充和颗粒流。进行了A356 / 50 mu M SICP的螺旋形间接挤压铸件的实验,以验证已建立的模型。用微量数字图像分析系统定量测量铸件不同位置的SICP馏分,并与模拟结果进行比较。发现沿着填充距离的不同位置处的颗粒状级分和分布图案非常不同。关于铸件中SICP分布的实验和模拟结果显示可接受的一致性。此外,分析并讨论了流体流动和颗粒状轨迹对颗粒状分布的影响。该研究表明了实用颗粒增强Al基复合材料铸造模型的应用的有效性。

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