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3D numerical and experimental investigation on semi-solid AISi9Mg alloy slurry prepared by electromagnetic stirring

机译:电磁搅拌法制备半固态AlSi9Mg合金浆料的3D数值和实验研究

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To prepare semi-solid AlSi9Mg alloy slurry, we simulated electromagnetic stirring (EMS) based on a coupled 3D model of electromagnetic field, temperature field, and flow field by sequentially coupling ANSOFT and FLUENT software. Results show that magnetic flux density and electromagnetic body force (EMF) decrease and exhibit non-uniform patterns as stirring frequency increases. However, magnetic flux density and EMF increase in proportion to the stirring current but become more inhomogeneous. As EMF increases, the flow velocity and the depth of vortex in the semi-solid slurry gradually increase; thus, slurry temperature decreases. The deviation in temperature is then reduced between the center and the edge. As a result, the microstructure of the slurry evolves from coarse rosette grains to fine and spheroidal ones. By comparison, turbulent flow is generated by excessive and more unevenly distributed EMF, which causes deterioration in microstructures, such as the formation of cavities in the semi-solid AlSi9Mg alloy slurry. Based on simulation and experimental results, our conclusion is that reasonable process parameters have been obtained and verified experimentally. These results also show the validity and reliability of EMS-prepared semi-solid AlSi9Mg alloy.
机译:为了制备半固态AlSi9Mg合金浆料,我们通过依次耦合ANSOFT和FLUENT软件,基于电磁场,温度场和流场的耦合3D模型,模拟了电磁搅拌(EMS)。结果表明,随着搅拌频率的增加,磁通密度和电磁体力(EMF)降低并呈现出不均匀的模式。但是,磁通密度和EMF与搅拌电流成正比,但变得更加不均匀。随着EMF的增加,半固态浆液中的流速和涡旋深度逐渐增加;因此,浆料温度降低。然后减小中心和边缘之间的温度偏差。结果,浆液的微观结构从粗的玫瑰花状晶粒演变成细的和球形的晶粒。相比之下,过量和更不均匀分布的EMF会产生湍流,这会导致微观结构的恶化,例如在半固态AlSi9Mg合金浆料中形成空穴。根据仿真和实验结果,我们的结论是已经获得了合理的工艺参数并进行了实验验证。这些结果也表明了EMS制备的半固态AlSi9Mg合金的有效性和可靠性。

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